Optical flow evaluation results |
Statistics:
Average
SD
R0.5
R1.0
R2.0
A90
A95
A99
Error type: endpoint angle interpolation normalized interpolation |
A95 normalized interpolation error |
avg. |
Mequon (Hidden texture) im0 GT im1 |
Schefflera (Hidden texture) im0 GT im1 |
Urban (Synthetic) im0 GT im1 |
Teddy (Stereo) im0 GT im1 |
Backyard (High-speed camera) im0 GT im1 |
Basketball (High-speed camera) im0 GT im1 |
Dumptruck (High-speed camera) im0 GT im1 |
Evergreen (High-speed camera) im0 GT im1 | ||||||||||||||||
rank | all | disc | untext | all | disc | untext | all | disc | untext | all | disc | untext | all | disc | untext | all | disc | untext | all | disc | untext | all | disc | untext | |
EAFI [186] | 2.8 | 0.95 7 | 0.95 1 | 1.03 8 | 0.85 1 | 1.00 1 | 0.94 1 | 0.79 1 | 0.85 1 | 0.93 1 | 1.59 1 | 1.47 1 | 1.91 1 | 1.50 5 | 1.50 9 | 1.59 1 | 1.38 1 | 1.25 1 | 1.45 1 | 1.02 3 | 1.27 5 | 1.12 2 | 1.01 8 | 1.25 4 | 1.01 2 |
SoftsplatAug [190] | 4.0 | 0.93 4 | 0.97 2 | 1.00 6 | 0.87 2 | 1.10 2 | 0.95 2 | 0.82 3 | 0.93 4 | 0.94 3 | 1.62 3 | 1.52 3 | 1.96 4 | 1.49 3 | 1.45 3 | 1.65 8 | 1.41 4 | 1.27 2 | 1.48 4 | 1.03 9 | 1.25 3 | 1.15 11 | 0.98 2 | 1.21 2 | 1.02 8 |
SoftSplat [169] | 5.0 | 1.01 13 | 1.06 8 | 1.09 16 | 0.93 3 | 1.27 6 | 1.00 3 | 0.81 2 | 0.89 2 | 0.93 1 | 1.60 2 | 1.50 2 | 1.95 3 | 1.52 7 | 1.49 5 | 1.63 5 | 1.41 4 | 1.29 3 | 1.48 4 | 1.03 9 | 1.27 5 | 1.14 9 | 0.98 2 | 1.24 3 | 1.01 2 |
DistillNet [184] | 6.4 | 1.00 10 | 1.04 4 | 1.07 12 | 0.93 3 | 1.16 3 | 1.00 3 | 0.84 5 | 0.95 6 | 0.96 5 | 1.62 3 | 1.52 3 | 1.96 4 | 1.51 6 | 1.49 5 | 1.62 3 | 1.43 10 | 1.41 15 | 1.50 9 | 1.02 3 | 1.29 11 | 1.12 2 | 1.03 13 | 1.32 13 | 1.01 2 |
IDIAL [192] | 8.5 | 0.97 9 | 1.08 9 | 1.03 8 | 1.04 8 | 1.46 12 | 1.03 6 | 0.89 7 | 1.06 8 | 1.04 12 | 1.67 7 | 1.59 9 | 1.98 6 | 1.53 10 | 1.51 11 | 1.67 11 | 1.41 4 | 1.35 7 | 1.48 4 | 1.03 9 | 1.30 13 | 1.13 5 | 1.02 10 | 1.30 12 | 1.02 8 |
IFRNet [193] | 10.7 | 1.02 15 | 1.04 4 | 1.10 17 | 0.94 5 | 1.19 4 | 1.03 6 | 0.82 3 | 0.89 2 | 0.94 3 | 1.68 9 | 1.57 8 | 2.07 18 | 1.60 22 | 1.57 24 | 1.74 19 | 1.45 15 | 1.35 7 | 1.53 18 | 1.02 3 | 1.28 7 | 1.15 11 | 1.02 10 | 1.28 10 | 1.04 17 |
SepConv++ [185] | 15.5 | 1.08 22 | 1.24 24 | 1.15 56 | 1.04 8 | 1.41 9 | 1.09 79 | 0.94 12 | 1.16 16 | 1.02 8 | 1.72 16 | 1.69 19 | 2.02 11 | 1.55 13 | 1.51 11 | 1.68 12 | 1.40 3 | 1.36 12 | 1.47 3 | 1.02 3 | 1.30 13 | 1.13 5 | 0.99 4 | 1.28 10 | 1.01 2 |
DAI [168] | 15.6 | 1.06 18 | 1.04 4 | 1.15 56 | 1.08 13 | 1.54 32 | 1.10 92 | 0.84 5 | 0.94 5 | 0.98 6 | 1.67 7 | 1.55 5 | 2.10 23 | 1.54 11 | 1.53 14 | 1.64 6 | 1.43 10 | 1.35 7 | 1.50 9 | 1.02 3 | 1.29 11 | 1.13 5 | 1.05 14 | 1.36 16 | 1.01 2 |
STAR-Net [164] | 16.0 | 1.07 20 | 1.12 11 | 1.15 56 | 1.12 36 | 1.60 38 | 1.12 114 | 0.95 14 | 1.02 7 | 1.05 27 | 1.66 5 | 1.59 9 | 1.93 2 | 1.48 1 | 1.44 2 | 1.61 2 | 1.41 4 | 1.37 13 | 1.48 4 | 1.00 1 | 1.26 4 | 1.10 1 | 1.00 6 | 1.26 7 | 1.00 1 |
STSR [170] | 17.8 | 1.02 15 | 1.14 15 | 1.08 14 | 0.95 6 | 1.26 5 | 1.01 5 | 0.94 12 | 1.19 18 | 1.03 11 | 1.72 16 | 1.62 13 | 2.09 22 | 1.61 23 | 1.60 26 | 1.74 19 | 1.50 23 | 1.49 24 | 1.58 24 | 1.07 23 | 1.41 29 | 1.17 17 | 1.08 24 | 1.40 26 | 1.04 17 |
MV_VFI [183] | 21.9 | 1.07 20 | 1.22 20 | 1.15 56 | 1.09 19 | 1.52 26 | 1.14 129 | 0.89 7 | 1.14 12 | 1.01 7 | 1.70 11 | 1.67 17 | 2.00 7 | 1.57 16 | 1.53 14 | 1.71 16 | 1.47 21 | 1.46 20 | 1.54 21 | 1.04 13 | 1.35 21 | 1.15 11 | 1.05 14 | 1.38 19 | 1.02 8 |
TC-GAN [166] | 22.1 | 1.08 22 | 1.23 22 | 1.15 56 | 1.09 19 | 1.52 26 | 1.14 129 | 0.89 7 | 1.13 11 | 1.02 8 | 1.70 11 | 1.68 18 | 2.00 7 | 1.57 16 | 1.53 14 | 1.70 15 | 1.46 18 | 1.45 19 | 1.53 18 | 1.04 13 | 1.35 21 | 1.15 11 | 1.05 14 | 1.39 23 | 1.03 13 |
DAIN [152] | 26.3 | 1.10 31 | 1.23 22 | 1.17 124 | 1.10 23 | 1.53 31 | 1.15 132 | 0.91 10 | 1.15 13 | 1.02 8 | 1.70 11 | 1.66 16 | 2.00 7 | 1.57 16 | 1.54 18 | 1.72 17 | 1.46 18 | 1.46 20 | 1.53 18 | 1.04 13 | 1.36 23 | 1.15 11 | 1.05 14 | 1.39 23 | 1.03 13 |
BMBC [171] | 28.5 | 1.10 31 | 1.15 17 | 1.15 56 | 1.10 23 | 1.38 8 | 1.19 142 | 1.29 141 | 1.41 27 | 1.22 170 | 1.66 5 | 1.55 5 | 2.00 7 | 1.52 7 | 1.49 5 | 1.64 6 | 1.41 4 | 1.33 5 | 1.50 9 | 1.00 1 | 1.24 2 | 1.12 2 | 0.99 4 | 1.25 4 | 1.01 2 |
MEMC-Net+ [160] | 29.0 | 1.10 31 | 1.18 18 | 1.18 137 | 1.13 47 | 1.51 22 | 1.15 132 | 0.98 15 | 1.23 23 | 1.07 46 | 1.71 14 | 1.61 12 | 2.02 11 | 1.55 13 | 1.52 13 | 1.69 13 | 1.45 15 | 1.44 18 | 1.51 15 | 1.04 13 | 1.40 27 | 1.15 11 | 1.06 19 | 1.38 19 | 1.03 13 |
EDSC [173] | 29.7 | 1.00 10 | 1.14 15 | 1.05 10 | 1.06 10 | 1.47 16 | 1.11 107 | 1.00 16 | 1.15 13 | 1.15 146 | 1.73 19 | 1.71 21 | 2.05 15 | 1.58 19 | 1.55 19 | 1.72 17 | 1.44 12 | 1.40 14 | 1.50 9 | 1.04 13 | 1.28 7 | 1.20 21 | 1.06 19 | 1.34 14 | 1.10 151 |
AdaCoF [165] | 29.8 | 1.14 137 | 1.28 28 | 1.22 164 | 1.10 23 | 1.48 19 | 1.12 114 | 1.06 20 | 1.21 21 | 1.04 12 | 1.77 21 | 1.70 20 | 2.03 13 | 1.62 25 | 1.56 23 | 1.78 25 | 1.41 4 | 1.33 5 | 1.48 4 | 1.02 3 | 1.28 7 | 1.13 5 | 1.00 6 | 1.27 9 | 1.02 8 |
FGME [158] | 32.6 | 0.88 1 | 0.98 3 | 0.93 1 | 1.12 36 | 1.47 16 | 1.18 141 | 1.07 21 | 1.11 10 | 1.22 170 | 1.71 14 | 1.56 7 | 2.10 23 | 1.48 1 | 1.43 1 | 1.66 9 | 1.48 22 | 1.35 7 | 1.56 22 | 1.04 13 | 1.20 1 | 1.21 76 | 1.02 10 | 1.25 4 | 1.12 173 |
GDCN [172] | 32.9 | 1.00 10 | 1.21 19 | 1.05 10 | 1.27 119 | 1.78 82 | 1.13 126 | 0.93 11 | 1.18 17 | 1.07 46 | 1.83 62 | 1.71 21 | 2.06 17 | 1.59 20 | 1.55 19 | 1.76 22 | 1.50 23 | 1.58 30 | 1.56 22 | 1.05 21 | 1.34 19 | 1.19 18 | 1.05 14 | 1.39 23 | 1.05 19 |
MDP-Flow2 [68] | 36.1 | 1.09 25 | 1.35 34 | 1.13 21 | 1.11 30 | 1.60 38 | 1.06 15 | 1.19 28 | 1.49 35 | 1.04 12 | 1.80 26 | 1.83 41 | 2.22 35 | 1.73 35 | 1.70 35 | 1.94 49 | 1.70 65 | 2.17 71 | 1.74 62 | 1.08 25 | 1.48 39 | 1.20 21 | 1.19 49 | 1.69 47 | 1.07 28 |
FeFlow [167] | 36.1 | 0.96 8 | 1.12 11 | 1.02 7 | 1.17 74 | 1.61 42 | 1.19 142 | 1.07 21 | 1.21 21 | 1.24 179 | 1.72 16 | 1.63 14 | 2.05 15 | 1.52 7 | 1.49 5 | 1.66 9 | 1.45 15 | 1.41 15 | 1.52 16 | 1.07 23 | 1.30 13 | 1.20 21 | 1.07 22 | 1.38 19 | 1.10 151 |
PMMST [112] | 38.3 | 1.10 31 | 1.35 34 | 1.14 33 | 1.14 54 | 1.62 48 | 1.07 31 | 1.19 28 | 1.45 30 | 1.04 12 | 1.80 26 | 1.82 38 | 2.23 42 | 1.74 36 | 1.71 39 | 1.94 49 | 1.67 34 | 1.85 36 | 1.74 62 | 1.08 25 | 1.49 44 | 1.20 21 | 1.19 49 | 1.69 47 | 1.08 70 |
DSepConv [162] | 38.8 | 1.06 18 | 1.26 25 | 1.12 18 | 1.15 58 | 1.56 34 | 1.19 142 | 1.08 24 | 1.20 20 | 1.17 157 | 1.81 36 | 1.76 25 | 2.08 19 | 1.59 20 | 1.55 19 | 1.77 23 | 1.46 18 | 1.47 22 | 1.52 16 | 1.04 13 | 1.31 17 | 1.20 21 | 1.08 24 | 1.41 27 | 1.09 134 |
CoT-AMFlow [174] | 39.4 | 1.09 25 | 1.36 36 | 1.13 21 | 1.11 30 | 1.62 48 | 1.06 15 | 1.21 40 | 1.55 42 | 1.04 12 | 1.80 26 | 1.83 41 | 2.23 42 | 1.74 36 | 1.71 39 | 1.94 49 | 1.70 65 | 2.22 82 | 1.75 83 | 1.08 25 | 1.48 39 | 1.20 21 | 1.19 49 | 1.70 51 | 1.07 28 |
GMFlow_RVC [196] | 40.7 | 1.10 31 | 1.47 62 | 1.14 33 | 1.09 19 | 1.51 22 | 1.07 31 | 1.20 32 | 1.50 36 | 1.04 12 | 1.80 26 | 1.84 47 | 2.25 84 | 1.76 62 | 1.74 66 | 1.94 49 | 1.70 65 | 2.22 82 | 1.73 44 | 1.08 25 | 1.47 33 | 1.20 21 | 1.17 36 | 1.65 37 | 1.06 21 |
CombBMOF [111] | 41.0 | 1.10 31 | 1.37 37 | 1.14 33 | 1.10 23 | 1.59 37 | 1.06 15 | 1.23 73 | 1.55 42 | 1.10 96 | 1.82 48 | 1.85 53 | 2.24 56 | 1.75 45 | 1.72 43 | 1.93 35 | 1.67 34 | 1.91 41 | 1.73 44 | 1.09 39 | 1.50 48 | 1.20 21 | 1.15 33 | 1.62 36 | 1.06 21 |
NNF-Local [75] | 41.8 | 1.09 25 | 1.38 39 | 1.13 21 | 1.07 11 | 1.46 12 | 1.05 8 | 1.19 28 | 1.47 33 | 1.04 12 | 1.83 62 | 1.93 98 | 2.23 42 | 1.74 36 | 1.70 35 | 1.93 35 | 1.72 95 | 2.42 108 | 1.75 83 | 1.09 39 | 1.50 48 | 1.20 21 | 1.18 39 | 1.68 44 | 1.07 28 |
ADC [161] | 43.4 | 1.15 143 | 1.27 26 | 1.22 164 | 1.18 77 | 1.52 26 | 1.24 159 | 1.14 26 | 1.33 26 | 1.10 96 | 1.82 48 | 1.76 25 | 2.08 19 | 1.62 25 | 1.58 25 | 1.77 23 | 1.44 12 | 1.41 15 | 1.50 9 | 1.03 9 | 1.31 17 | 1.14 9 | 1.07 22 | 1.41 27 | 1.03 13 |
PH-Flow [99] | 44.2 | 1.11 55 | 1.41 46 | 1.14 33 | 1.08 13 | 1.51 22 | 1.05 8 | 1.20 32 | 1.52 39 | 1.04 12 | 1.80 26 | 1.81 34 | 2.23 42 | 1.74 36 | 1.71 39 | 1.93 35 | 1.72 95 | 2.62 142 | 1.74 62 | 1.09 39 | 1.52 60 | 1.20 21 | 1.19 49 | 1.70 51 | 1.08 70 |
NN-field [71] | 46.0 | 1.10 31 | 1.43 49 | 1.14 33 | 1.08 13 | 1.47 16 | 1.05 8 | 1.24 83 | 1.47 33 | 1.07 46 | 1.85 98 | 2.00 134 | 2.23 42 | 1.74 36 | 1.70 35 | 1.94 49 | 1.70 65 | 2.21 79 | 1.74 62 | 1.08 25 | 1.48 39 | 1.20 21 | 1.18 39 | 1.67 41 | 1.07 28 |
CtxSyn [134] | 47.3 | 0.93 4 | 1.12 11 | 0.98 4 | 1.00 7 | 1.35 7 | 1.08 58 | 1.04 17 | 1.15 13 | 1.22 170 | 1.76 20 | 1.65 15 | 2.17 28 | 1.69 31 | 1.64 31 | 1.91 32 | 1.62 29 | 1.56 28 | 1.71 29 | 1.14 161 | 1.39 25 | 1.26 178 | 1.11 28 | 1.41 27 | 1.14 183 |
ProBoost-Net [191] | 47.6 | 0.89 3 | 1.05 7 | 0.94 3 | 1.19 83 | 1.72 69 | 1.13 126 | 1.07 21 | 1.19 18 | 1.22 170 | 1.78 23 | 1.71 21 | 2.20 29 | 1.61 23 | 1.55 19 | 1.83 26 | 1.56 26 | 1.49 24 | 1.63 26 | 1.08 25 | 1.34 19 | 1.24 162 | 1.09 26 | 1.36 16 | 1.13 178 |
IROF++ [58] | 50.3 | 1.11 55 | 1.44 50 | 1.14 33 | 1.13 47 | 1.68 58 | 1.05 8 | 1.22 47 | 1.61 66 | 1.07 46 | 1.80 26 | 1.81 34 | 2.24 56 | 1.74 36 | 1.72 43 | 1.93 35 | 1.68 44 | 2.06 50 | 1.73 44 | 1.10 64 | 1.56 85 | 1.21 76 | 1.20 64 | 1.75 71 | 1.08 70 |
MAF-net [163] | 51.0 | 0.88 1 | 1.08 9 | 0.93 1 | 1.13 47 | 1.62 48 | 1.12 114 | 1.05 18 | 1.32 25 | 1.22 170 | 1.84 84 | 1.78 29 | 2.20 29 | 1.66 29 | 1.62 29 | 1.83 26 | 1.55 25 | 1.56 28 | 1.62 25 | 1.10 64 | 1.39 25 | 1.25 169 | 1.11 28 | 1.38 19 | 1.14 183 |
MPRN [151] | 52.3 | 1.10 31 | 1.30 31 | 1.15 56 | 1.18 77 | 1.68 58 | 1.15 132 | 1.31 151 | 1.93 146 | 1.15 146 | 1.80 26 | 1.80 32 | 2.16 27 | 1.70 32 | 1.65 32 | 1.89 30 | 1.62 29 | 1.55 27 | 1.71 29 | 1.08 25 | 1.44 32 | 1.20 21 | 1.09 26 | 1.45 32 | 1.07 28 |
nLayers [57] | 52.7 | 1.11 55 | 1.40 43 | 1.15 56 | 1.11 30 | 1.60 38 | 1.07 31 | 1.20 32 | 1.44 29 | 1.06 31 | 1.81 36 | 1.83 41 | 2.23 42 | 1.77 102 | 1.76 105 | 1.95 80 | 1.72 95 | 2.42 108 | 1.76 110 | 1.09 39 | 1.47 33 | 1.20 21 | 1.18 39 | 1.67 41 | 1.07 28 |
Layers++ [37] | 53.1 | 1.12 79 | 1.45 53 | 1.15 56 | 1.09 19 | 1.46 12 | 1.07 31 | 1.22 47 | 1.59 57 | 1.07 46 | 1.81 36 | 1.85 53 | 2.23 42 | 1.76 62 | 1.75 82 | 1.94 49 | 1.72 95 | 2.56 131 | 1.75 83 | 1.09 39 | 1.47 33 | 1.20 21 | 1.18 39 | 1.66 39 | 1.08 70 |
RAFT-it+_RVC [198] | 53.7 | 1.08 22 | 1.44 50 | 1.12 18 | 1.08 13 | 1.50 20 | 1.05 8 | 1.21 40 | 1.55 42 | 1.04 12 | 1.81 36 | 1.86 59 | 2.23 42 | 1.75 45 | 1.72 43 | 1.95 80 | 2.02 194 | 2.35 102 | 2.13 196 | 1.08 25 | 1.48 39 | 1.21 76 | 1.18 39 | 1.74 67 | 1.06 21 |
FRUCnet [153] | 54.3 | 1.36 190 | 1.28 28 | 1.50 192 | 1.20 89 | 1.52 26 | 1.29 172 | 1.18 27 | 1.31 24 | 1.31 187 | 1.77 21 | 1.72 24 | 2.08 19 | 1.55 13 | 1.53 14 | 1.69 13 | 1.44 12 | 1.48 23 | 1.50 9 | 1.05 21 | 1.30 13 | 1.19 18 | 1.06 19 | 1.35 15 | 1.09 134 |
MS_RAFT+_RVC [195] | 55.7 | 1.10 31 | 1.41 46 | 1.15 56 | 1.10 23 | 1.58 35 | 1.06 15 | 1.19 28 | 1.43 28 | 1.04 12 | 1.79 24 | 1.78 29 | 2.23 42 | 1.77 102 | 1.75 82 | 1.96 126 | 1.67 34 | 1.83 35 | 1.73 44 | 1.08 25 | 1.47 33 | 1.21 76 | 1.41 191 | 2.46 192 | 1.07 28 |
FMOF [92] | 56.0 | 1.12 79 | 1.52 88 | 1.15 56 | 1.12 36 | 1.61 42 | 1.07 31 | 1.24 83 | 1.60 60 | 1.10 96 | 1.83 62 | 1.90 80 | 2.23 42 | 1.75 45 | 1.73 51 | 1.94 49 | 1.70 65 | 2.09 58 | 1.74 62 | 1.08 25 | 1.47 33 | 1.20 21 | 1.20 64 | 1.69 47 | 1.08 70 |
VCN_RVC [178] | 57.9 | 1.11 55 | 1.62 147 | 1.14 33 | 1.11 30 | 1.61 42 | 1.06 15 | 1.24 83 | 1.79 112 | 1.07 46 | 1.83 62 | 1.92 93 | 2.26 112 | 1.76 62 | 1.74 66 | 1.94 49 | 1.68 44 | 2.06 50 | 1.72 34 | 1.09 39 | 1.52 60 | 1.20 21 | 1.18 39 | 1.76 75 | 1.06 21 |
PRAFlow_RVC [177] | 59.1 | 1.10 31 | 1.40 43 | 1.13 21 | 1.11 30 | 1.61 42 | 1.07 31 | 1.20 32 | 1.53 40 | 1.04 12 | 1.82 48 | 1.85 53 | 2.25 84 | 1.76 62 | 1.73 51 | 1.96 126 | 1.69 53 | 2.03 46 | 1.75 83 | 1.09 39 | 1.50 48 | 1.21 76 | 1.24 140 | 1.89 158 | 1.08 70 |
2DHMM-SAS [90] | 60.1 | 1.12 79 | 1.50 76 | 1.15 56 | 1.26 114 | 2.00 121 | 1.07 31 | 1.21 40 | 1.62 68 | 1.07 46 | 1.82 48 | 1.85 53 | 2.24 56 | 1.75 45 | 1.73 51 | 1.94 49 | 1.69 53 | 2.09 58 | 1.73 44 | 1.10 64 | 1.53 67 | 1.20 21 | 1.21 82 | 1.78 93 | 1.07 28 |
NNF-EAC [101] | 60.2 | 1.12 79 | 1.48 72 | 1.15 56 | 1.15 58 | 1.71 65 | 1.07 31 | 1.22 47 | 1.55 42 | 1.07 46 | 1.85 98 | 1.88 69 | 2.30 160 | 1.75 45 | 1.72 43 | 1.94 49 | 1.67 34 | 1.87 37 | 1.73 44 | 1.09 39 | 1.53 67 | 1.21 76 | 1.20 64 | 1.71 54 | 1.08 70 |
Sparse-NonSparse [56] | 62.1 | 1.11 55 | 1.47 62 | 1.15 56 | 1.12 36 | 1.68 58 | 1.06 15 | 1.22 47 | 1.61 66 | 1.06 31 | 1.83 62 | 1.86 59 | 2.24 56 | 1.76 62 | 1.74 66 | 1.94 49 | 1.73 115 | 2.54 125 | 1.76 110 | 1.10 64 | 1.57 91 | 1.20 21 | 1.20 64 | 1.78 93 | 1.07 28 |
RAFT-it [194] | 62.7 | 1.09 25 | 1.47 62 | 1.13 21 | 1.07 11 | 1.46 12 | 1.05 8 | 1.20 32 | 1.50 36 | 1.04 12 | 1.80 26 | 1.82 38 | 2.24 56 | 1.75 45 | 1.72 43 | 1.94 49 | 2.06 196 | 2.28 89 | 2.16 198 | 1.08 25 | 1.47 33 | 1.21 76 | 1.41 191 | 2.56 193 | 1.07 28 |
RAFT-TF_RVC [179] | 63.5 | 1.10 31 | 1.47 62 | 1.12 18 | 1.10 23 | 1.58 35 | 1.06 15 | 1.21 40 | 1.55 42 | 1.06 31 | 1.82 48 | 1.87 64 | 2.25 84 | 1.75 45 | 1.72 43 | 1.95 80 | 2.03 195 | 2.31 93 | 2.10 194 | 1.08 25 | 1.49 44 | 1.20 21 | 1.22 104 | 1.92 165 | 1.06 21 |
COFM [59] | 63.7 | 1.11 55 | 1.44 50 | 1.15 56 | 1.12 36 | 1.66 56 | 1.07 31 | 1.21 40 | 1.55 42 | 1.06 31 | 1.80 26 | 1.83 41 | 2.21 31 | 1.74 36 | 1.73 51 | 1.93 35 | 1.71 84 | 2.82 166 | 1.72 34 | 1.11 111 | 1.53 67 | 1.24 162 | 1.21 82 | 1.71 54 | 1.10 151 |
CyclicGen [149] | 64.5 | 1.26 182 | 1.29 30 | 1.37 187 | 1.35 145 | 1.44 10 | 1.73 196 | 1.24 83 | 1.56 54 | 1.28 185 | 1.86 111 | 1.76 25 | 2.27 133 | 1.65 28 | 1.60 26 | 1.86 29 | 1.59 28 | 1.30 4 | 1.71 29 | 1.04 13 | 1.28 7 | 1.20 21 | 0.97 1 | 1.16 1 | 1.05 19 |
HAST [107] | 65.1 | 1.10 31 | 1.39 41 | 1.15 56 | 1.12 36 | 1.60 38 | 1.06 15 | 1.25 101 | 1.67 89 | 1.08 75 | 1.79 24 | 1.79 31 | 2.21 31 | 1.76 62 | 1.75 82 | 1.93 35 | 1.73 115 | 2.77 159 | 1.73 44 | 1.10 64 | 1.56 85 | 1.21 76 | 1.23 123 | 1.81 121 | 1.07 28 |
UnDAF [187] | 66.0 | 1.10 31 | 1.45 53 | 1.14 33 | 1.16 72 | 1.77 80 | 1.07 31 | 1.24 83 | 1.82 118 | 1.05 27 | 1.84 84 | 1.98 125 | 2.25 84 | 1.75 45 | 1.72 43 | 1.94 49 | 1.71 84 | 2.31 93 | 1.75 83 | 1.09 39 | 1.54 73 | 1.21 76 | 1.21 82 | 1.74 67 | 1.07 28 |
TV-L1-MCT [64] | 66.0 | 1.13 123 | 1.55 104 | 1.15 56 | 1.19 83 | 1.89 99 | 1.07 31 | 1.22 47 | 1.66 82 | 1.07 46 | 1.81 36 | 1.84 47 | 2.24 56 | 1.76 62 | 1.75 82 | 1.94 49 | 1.70 65 | 2.10 60 | 1.75 83 | 1.10 64 | 1.55 81 | 1.21 76 | 1.18 39 | 1.68 44 | 1.08 70 |
LME [70] | 66.5 | 1.09 25 | 1.38 39 | 1.13 21 | 1.15 58 | 1.70 62 | 1.12 114 | 1.23 73 | 1.76 108 | 1.07 46 | 1.81 36 | 1.87 64 | 2.24 56 | 1.78 138 | 1.78 147 | 2.00 181 | 1.70 65 | 2.26 86 | 1.74 62 | 1.08 25 | 1.48 39 | 1.20 21 | 1.19 49 | 1.71 54 | 1.07 28 |
FLAVR [188] | 66.7 | 1.25 179 | 1.37 37 | 1.29 182 | 1.38 151 | 1.50 20 | 1.41 186 | 1.23 73 | 1.46 32 | 1.25 180 | 2.22 190 | 2.38 190 | 2.13 25 | 1.49 3 | 1.47 4 | 1.62 3 | 1.39 2 | 1.35 7 | 1.45 1 | 1.10 64 | 1.43 31 | 1.19 18 | 1.01 8 | 1.26 7 | 1.02 8 |
AGIF+OF [84] | 67.2 | 1.11 55 | 1.47 62 | 1.14 33 | 1.14 54 | 1.73 72 | 1.07 31 | 1.22 47 | 1.57 55 | 1.07 46 | 1.81 36 | 1.82 38 | 2.22 35 | 1.78 138 | 1.78 147 | 1.95 80 | 1.73 115 | 2.72 156 | 1.74 62 | 1.10 64 | 1.51 55 | 1.20 21 | 1.21 82 | 1.79 101 | 1.07 28 |
WLIF-Flow [91] | 67.7 | 1.10 31 | 1.45 53 | 1.14 33 | 1.14 54 | 1.74 74 | 1.07 31 | 1.22 47 | 1.55 42 | 1.06 31 | 1.83 62 | 1.83 41 | 2.28 147 | 1.75 45 | 1.73 51 | 1.96 126 | 1.76 148 | 2.68 151 | 1.79 160 | 1.09 39 | 1.49 44 | 1.20 21 | 1.20 64 | 1.72 59 | 1.08 70 |
ComponentFusion [94] | 67.8 | 1.10 31 | 1.46 58 | 1.14 33 | 1.12 36 | 1.65 53 | 1.05 8 | 1.22 47 | 1.64 77 | 1.07 46 | 1.81 36 | 1.85 53 | 2.22 35 | 1.77 102 | 1.75 82 | 1.95 80 | 1.70 65 | 2.21 79 | 1.75 83 | 1.11 111 | 1.69 151 | 1.21 76 | 1.22 104 | 1.80 111 | 1.08 70 |
S2F-IF [121] | 68.1 | 1.10 31 | 1.51 81 | 1.14 33 | 1.12 36 | 1.65 53 | 1.07 31 | 1.22 47 | 1.70 97 | 1.06 31 | 1.82 48 | 1.91 84 | 2.24 56 | 1.77 102 | 1.76 105 | 1.95 80 | 1.72 95 | 2.54 125 | 1.76 110 | 1.10 64 | 1.57 91 | 1.21 76 | 1.19 49 | 1.77 82 | 1.07 28 |
FlowFields [108] | 68.4 | 1.10 31 | 1.53 95 | 1.14 33 | 1.13 47 | 1.70 62 | 1.07 31 | 1.22 47 | 1.68 92 | 1.06 31 | 1.84 84 | 1.95 113 | 2.26 112 | 1.76 62 | 1.74 66 | 1.95 80 | 1.72 95 | 2.49 116 | 1.76 110 | 1.09 39 | 1.52 60 | 1.21 76 | 1.19 49 | 1.77 82 | 1.07 28 |
EAI-Flow [147] | 68.8 | 1.12 79 | 1.57 121 | 1.15 56 | 1.20 89 | 1.83 90 | 1.10 92 | 1.25 101 | 1.84 124 | 1.07 46 | 1.82 48 | 1.91 84 | 2.21 31 | 1.76 62 | 1.74 66 | 1.94 49 | 1.68 44 | 2.12 64 | 1.73 44 | 1.10 64 | 1.61 124 | 1.21 76 | 1.15 33 | 1.65 37 | 1.07 28 |
OFRI [154] | 69.0 | 1.15 143 | 1.13 14 | 1.25 175 | 1.20 89 | 1.52 26 | 1.33 175 | 1.05 18 | 1.08 9 | 1.22 170 | 1.69 10 | 1.60 11 | 2.04 14 | 1.54 11 | 1.50 9 | 1.74 19 | 1.56 26 | 1.66 32 | 1.66 27 | 1.73 198 | 1.41 29 | 1.73 199 | 1.17 36 | 1.37 18 | 1.57 198 |
LSM [39] | 70.2 | 1.12 79 | 1.50 76 | 1.15 56 | 1.13 47 | 1.70 62 | 1.06 15 | 1.22 47 | 1.68 92 | 1.06 31 | 1.83 62 | 1.87 64 | 2.24 56 | 1.76 62 | 1.75 82 | 1.95 80 | 1.73 115 | 2.63 144 | 1.76 110 | 1.10 64 | 1.58 108 | 1.20 21 | 1.21 82 | 1.79 101 | 1.07 28 |
FlowFields+ [128] | 70.5 | 1.10 31 | 1.51 81 | 1.14 33 | 1.12 36 | 1.66 56 | 1.08 58 | 1.22 47 | 1.72 101 | 1.06 31 | 1.83 62 | 1.93 98 | 2.25 84 | 1.77 102 | 1.76 105 | 1.95 80 | 1.72 95 | 2.60 141 | 1.76 110 | 1.09 39 | 1.51 55 | 1.21 76 | 1.19 49 | 1.78 93 | 1.07 28 |
TOF-M [150] | 72.5 | 1.01 13 | 1.22 20 | 1.07 12 | 1.30 130 | 1.82 88 | 1.30 173 | 1.23 73 | 1.55 42 | 1.30 186 | 1.84 84 | 1.77 28 | 2.22 35 | 1.72 33 | 1.68 33 | 1.93 35 | 1.67 34 | 1.69 33 | 1.75 83 | 1.12 136 | 1.40 27 | 1.28 185 | 1.16 35 | 1.52 34 | 1.15 189 |
HCFN [157] | 74.2 | 1.10 31 | 1.52 88 | 1.13 21 | 1.15 58 | 1.79 84 | 1.07 31 | 1.22 47 | 1.66 82 | 1.06 31 | 1.82 48 | 1.88 69 | 2.25 84 | 1.75 45 | 1.73 51 | 1.93 35 | 1.93 191 | 2.22 82 | 2.04 193 | 1.10 64 | 1.60 117 | 1.21 76 | 1.21 82 | 1.79 101 | 1.08 70 |
MS-PFT [159] | 74.2 | 1.04 17 | 1.27 26 | 1.08 14 | 1.22 101 | 1.64 52 | 1.26 167 | 1.22 47 | 1.55 42 | 1.36 192 | 1.85 98 | 1.96 117 | 2.15 26 | 1.64 27 | 1.60 26 | 1.84 28 | 1.65 32 | 1.69 33 | 1.73 44 | 1.14 161 | 1.57 91 | 1.32 195 | 1.12 30 | 1.48 33 | 1.14 183 |
ProbFlowFields [126] | 74.5 | 1.11 55 | 1.56 112 | 1.15 56 | 1.11 30 | 1.65 53 | 1.06 15 | 1.20 32 | 1.57 55 | 1.05 27 | 1.84 84 | 1.94 107 | 2.26 112 | 1.77 102 | 1.76 105 | 1.97 164 | 1.74 132 | 2.80 160 | 1.77 138 | 1.08 25 | 1.51 55 | 1.20 21 | 1.17 36 | 1.67 41 | 1.08 70 |
SRR-TVOF-NL [89] | 74.6 | 1.12 79 | 1.54 99 | 1.15 56 | 1.24 105 | 1.97 114 | 1.11 107 | 1.24 83 | 1.64 77 | 1.07 46 | 1.81 36 | 1.84 47 | 2.22 35 | 1.76 62 | 1.76 105 | 1.94 49 | 1.67 34 | 2.21 79 | 1.71 29 | 1.10 64 | 1.53 67 | 1.21 76 | 1.24 140 | 1.83 131 | 1.08 70 |
FC-2Layers-FF [74] | 74.9 | 1.12 79 | 1.50 76 | 1.15 56 | 1.08 13 | 1.45 11 | 1.08 58 | 1.21 40 | 1.60 60 | 1.06 31 | 1.82 48 | 1.86 59 | 2.24 56 | 1.77 102 | 1.76 105 | 1.95 80 | 1.76 148 | 2.95 179 | 1.77 138 | 1.10 64 | 1.60 117 | 1.20 21 | 1.22 104 | 1.77 82 | 1.08 70 |
Ramp [62] | 74.9 | 1.12 79 | 1.52 88 | 1.15 56 | 1.13 47 | 1.71 65 | 1.07 31 | 1.22 47 | 1.62 68 | 1.06 31 | 1.81 36 | 1.84 47 | 2.24 56 | 1.76 62 | 1.75 82 | 1.95 80 | 1.76 148 | 2.87 172 | 1.77 138 | 1.10 64 | 1.56 85 | 1.20 21 | 1.22 104 | 1.81 121 | 1.08 70 |
Classic+NL [31] | 76.0 | 1.12 79 | 1.54 99 | 1.15 56 | 1.15 58 | 1.73 72 | 1.07 31 | 1.22 47 | 1.63 71 | 1.06 31 | 1.83 62 | 1.89 73 | 2.25 84 | 1.76 62 | 1.74 66 | 1.95 80 | 1.75 140 | 2.57 133 | 1.77 138 | 1.10 64 | 1.57 91 | 1.20 21 | 1.22 104 | 1.78 93 | 1.08 70 |
SegFlow [156] | 76.3 | 1.11 55 | 1.57 121 | 1.15 56 | 1.15 58 | 1.74 74 | 1.08 58 | 1.24 83 | 1.74 105 | 1.07 46 | 1.83 62 | 1.94 107 | 2.25 84 | 1.76 62 | 1.75 82 | 1.96 126 | 1.72 95 | 2.38 106 | 1.76 110 | 1.09 39 | 1.57 91 | 1.20 21 | 1.19 49 | 1.75 71 | 1.08 70 |
SepConv-v1 [125] | 76.7 | 0.94 6 | 1.31 33 | 0.98 4 | 1.17 74 | 1.78 82 | 1.12 114 | 1.13 25 | 1.51 38 | 1.26 183 | 1.92 156 | 1.90 80 | 2.26 112 | 1.74 36 | 1.70 35 | 1.95 80 | 1.63 31 | 1.62 31 | 1.71 29 | 1.15 170 | 1.55 81 | 1.30 190 | 1.14 32 | 1.42 30 | 1.15 189 |
OFLAF [78] | 77.0 | 1.10 31 | 1.39 41 | 1.14 33 | 1.08 13 | 1.51 22 | 1.06 15 | 1.22 47 | 1.59 57 | 1.04 12 | 1.80 26 | 1.81 34 | 2.21 31 | 1.77 102 | 1.76 105 | 1.96 126 | 1.75 140 | 2.93 178 | 1.76 110 | 1.12 136 | 1.86 172 | 1.21 76 | 1.24 140 | 1.83 131 | 1.08 70 |
Aniso. Huber-L1 [22] | 77.2 | 1.13 123 | 1.57 121 | 1.17 124 | 1.41 155 | 2.18 152 | 1.11 107 | 1.25 101 | 1.65 80 | 1.08 75 | 1.83 62 | 1.89 73 | 2.25 84 | 1.75 45 | 1.73 51 | 1.94 49 | 1.67 34 | 2.06 50 | 1.72 34 | 1.10 64 | 1.52 60 | 1.20 21 | 1.20 64 | 1.71 54 | 1.08 70 |
RNLOD-Flow [119] | 78.0 | 1.11 55 | 1.47 62 | 1.15 56 | 1.21 95 | 1.98 117 | 1.07 31 | 1.23 73 | 1.72 101 | 1.07 46 | 1.81 36 | 1.83 41 | 2.23 42 | 1.77 102 | 1.77 130 | 1.95 80 | 1.73 115 | 2.55 129 | 1.76 110 | 1.09 39 | 1.52 60 | 1.21 76 | 1.23 123 | 1.82 126 | 1.07 28 |
DeepFlow2 [106] | 78.3 | 1.12 79 | 1.52 88 | 1.15 56 | 1.24 105 | 1.99 120 | 1.10 92 | 1.24 83 | 1.83 121 | 1.08 75 | 1.85 98 | 1.91 84 | 2.25 84 | 1.76 62 | 1.73 51 | 1.96 126 | 1.68 44 | 1.87 37 | 1.75 83 | 1.10 64 | 1.54 73 | 1.21 76 | 1.19 49 | 1.72 59 | 1.08 70 |
MDP-Flow [26] | 78.4 | 1.10 31 | 1.47 62 | 1.14 33 | 1.13 47 | 1.69 61 | 1.08 58 | 1.22 47 | 1.60 60 | 1.08 75 | 1.88 131 | 1.99 130 | 2.25 84 | 1.76 62 | 1.73 51 | 1.96 126 | 1.76 148 | 3.26 185 | 1.76 110 | 1.10 64 | 1.54 73 | 1.21 76 | 1.20 64 | 1.76 75 | 1.07 28 |
PGM-C [118] | 79.0 | 1.11 55 | 1.56 112 | 1.15 56 | 1.15 58 | 1.71 65 | 1.08 58 | 1.25 101 | 1.76 108 | 1.07 46 | 1.84 84 | 1.95 113 | 2.24 56 | 1.77 102 | 1.75 82 | 1.96 126 | 1.71 84 | 2.24 85 | 1.75 83 | 1.09 39 | 1.58 108 | 1.20 21 | 1.20 64 | 1.81 121 | 1.08 70 |
SuperSlomo [130] | 79.2 | 1.11 55 | 1.30 31 | 1.17 124 | 1.33 138 | 1.76 77 | 1.40 185 | 1.25 101 | 1.55 42 | 1.25 180 | 1.86 111 | 1.80 32 | 2.23 42 | 1.68 30 | 1.63 30 | 1.90 31 | 1.65 32 | 1.51 26 | 1.74 62 | 1.11 111 | 1.38 24 | 1.28 185 | 1.13 31 | 1.44 31 | 1.15 189 |
DPOF [18] | 80.0 | 1.13 123 | 1.65 159 | 1.17 124 | 1.10 23 | 1.55 33 | 1.08 58 | 1.29 141 | 1.62 68 | 1.11 123 | 1.84 84 | 1.93 98 | 2.25 84 | 1.75 45 | 1.73 51 | 1.93 35 | 1.69 53 | 2.17 71 | 1.72 34 | 1.10 64 | 1.54 73 | 1.22 130 | 1.22 104 | 1.75 71 | 1.08 70 |
JOF [136] | 80.3 | 1.13 123 | 1.52 88 | 1.17 124 | 1.12 36 | 1.61 42 | 1.08 58 | 1.21 40 | 1.55 42 | 1.06 31 | 1.85 98 | 1.87 64 | 2.28 147 | 1.76 62 | 1.75 82 | 1.96 126 | 1.75 140 | 2.53 124 | 1.76 110 | 1.09 39 | 1.50 48 | 1.20 21 | 1.21 82 | 1.74 67 | 1.09 134 |
FESL [72] | 81.0 | 1.12 79 | 1.49 73 | 1.15 56 | 1.15 58 | 1.75 76 | 1.07 31 | 1.23 73 | 1.66 82 | 1.08 75 | 1.83 62 | 1.88 69 | 2.24 56 | 1.77 102 | 1.76 105 | 1.96 126 | 1.75 140 | 2.85 170 | 1.76 110 | 1.10 64 | 1.57 91 | 1.20 21 | 1.22 104 | 1.78 93 | 1.07 28 |
CPM-Flow [114] | 81.4 | 1.12 79 | 1.57 121 | 1.15 56 | 1.15 58 | 1.72 69 | 1.08 58 | 1.24 83 | 1.73 103 | 1.07 46 | 1.87 119 | 2.02 146 | 2.26 112 | 1.76 62 | 1.75 82 | 1.96 126 | 1.70 65 | 2.08 57 | 1.76 110 | 1.10 64 | 1.58 108 | 1.20 21 | 1.20 64 | 1.76 75 | 1.08 70 |
DeepFlow [85] | 81.7 | 1.12 79 | 1.50 76 | 1.15 56 | 1.25 109 | 2.00 121 | 1.12 114 | 1.24 83 | 1.87 134 | 1.08 75 | 1.87 119 | 1.92 93 | 2.26 112 | 1.76 62 | 1.73 51 | 1.96 126 | 1.71 84 | 1.88 39 | 1.78 149 | 1.09 39 | 1.50 48 | 1.20 21 | 1.19 49 | 1.70 51 | 1.08 70 |
LFNet_ROB [145] | 81.7 | 1.12 79 | 1.55 104 | 1.15 56 | 1.25 109 | 1.96 112 | 1.11 107 | 1.27 126 | 2.09 166 | 1.10 96 | 1.85 98 | 2.00 134 | 2.22 35 | 1.76 62 | 1.75 82 | 1.94 49 | 1.72 95 | 2.81 163 | 1.73 44 | 1.09 39 | 1.51 55 | 1.20 21 | 1.18 39 | 1.73 62 | 1.07 28 |
PMF [73] | 82.3 | 1.10 31 | 1.40 43 | 1.13 21 | 1.15 58 | 1.72 69 | 1.06 15 | 1.26 115 | 1.94 147 | 1.10 96 | 1.82 48 | 1.86 59 | 2.24 56 | 1.77 102 | 1.76 105 | 1.94 49 | 1.74 132 | 2.13 66 | 1.80 165 | 1.10 64 | 1.57 91 | 1.22 130 | 1.25 148 | 1.84 137 | 1.07 28 |
EPPM w/o HM [86] | 82.3 | 1.09 25 | 1.41 46 | 1.13 21 | 1.16 72 | 1.83 90 | 1.06 15 | 1.31 151 | 2.09 166 | 1.10 96 | 1.83 62 | 1.93 98 | 2.24 56 | 1.75 45 | 1.74 66 | 1.95 80 | 1.72 95 | 2.29 92 | 1.76 110 | 1.11 111 | 1.64 138 | 1.22 130 | 1.21 82 | 1.79 101 | 1.07 28 |
S2D-Matching [83] | 82.7 | 1.12 79 | 1.55 104 | 1.15 56 | 1.24 105 | 2.03 129 | 1.07 31 | 1.22 47 | 1.60 60 | 1.07 46 | 1.83 62 | 1.85 53 | 2.27 133 | 1.77 102 | 1.76 105 | 1.94 49 | 1.76 148 | 2.84 168 | 1.76 110 | 1.10 64 | 1.53 67 | 1.20 21 | 1.21 82 | 1.78 93 | 1.08 70 |
Second-order prior [8] | 83.3 | 1.12 79 | 1.53 95 | 1.15 56 | 1.34 140 | 2.16 150 | 1.09 79 | 1.32 160 | 2.09 166 | 1.12 131 | 1.84 84 | 1.90 80 | 2.23 42 | 1.76 62 | 1.74 66 | 1.94 49 | 1.68 44 | 2.11 62 | 1.74 62 | 1.10 64 | 1.54 73 | 1.20 21 | 1.21 82 | 1.77 82 | 1.08 70 |
Classic+CPF [82] | 83.8 | 1.12 79 | 1.47 62 | 1.14 33 | 1.15 58 | 1.77 80 | 1.06 15 | 1.22 47 | 1.65 80 | 1.07 46 | 1.81 36 | 1.81 34 | 2.22 35 | 1.79 161 | 1.80 170 | 1.95 80 | 1.76 148 | 2.90 176 | 1.76 110 | 1.11 111 | 1.63 132 | 1.20 21 | 1.23 123 | 1.86 146 | 1.07 28 |
AggregFlow [95] | 84.2 | 1.14 137 | 1.59 134 | 1.16 123 | 1.21 95 | 1.87 95 | 1.10 92 | 1.20 32 | 1.54 41 | 1.04 12 | 1.84 84 | 1.93 98 | 2.25 84 | 1.76 62 | 1.73 51 | 1.96 126 | 1.73 115 | 2.04 47 | 1.80 165 | 1.10 64 | 1.57 91 | 1.21 76 | 1.20 64 | 1.73 62 | 1.08 70 |
IROF-TV [53] | 84.2 | 1.12 79 | 1.57 121 | 1.15 56 | 1.15 58 | 1.76 77 | 1.06 15 | 1.25 101 | 1.95 148 | 1.08 75 | 1.83 62 | 1.89 73 | 2.26 112 | 1.78 138 | 1.77 130 | 1.97 164 | 1.69 53 | 2.35 102 | 1.72 34 | 1.10 64 | 1.57 91 | 1.21 76 | 1.20 64 | 1.72 59 | 1.08 70 |
DF-Auto [113] | 84.8 | 1.13 123 | 1.50 76 | 1.18 137 | 1.31 135 | 2.01 125 | 1.21 151 | 1.22 47 | 1.59 57 | 1.06 31 | 1.85 98 | 1.93 98 | 2.24 56 | 1.76 62 | 1.73 51 | 1.96 126 | 1.68 44 | 2.04 47 | 1.75 83 | 1.10 64 | 1.59 115 | 1.21 76 | 1.21 82 | 1.77 82 | 1.08 70 |
MCPFlow_RVC [197] | 85.0 | 1.12 79 | 1.53 95 | 1.15 56 | 1.14 54 | 1.62 48 | 1.12 114 | 1.22 47 | 1.68 92 | 1.04 12 | 1.82 48 | 1.86 59 | 2.25 84 | 1.76 62 | 1.74 66 | 1.95 80 | 1.76 148 | 2.88 173 | 1.75 83 | 1.09 39 | 1.52 60 | 1.21 76 | 2.03 198 | 3.68 198 | 1.08 70 |
Brox et al. [5] | 85.2 | 1.12 79 | 1.52 88 | 1.15 56 | 1.25 109 | 1.95 109 | 1.10 92 | 1.28 133 | 1.98 155 | 1.11 123 | 1.85 98 | 1.87 64 | 2.24 56 | 1.76 62 | 1.75 82 | 1.95 80 | 1.71 84 | 2.34 99 | 1.74 62 | 1.11 111 | 1.60 117 | 1.20 21 | 1.19 49 | 1.69 47 | 1.08 70 |
C-RAFT_RVC [181] | 85.6 | 1.15 143 | 1.55 104 | 1.18 137 | 1.20 89 | 1.81 86 | 1.12 114 | 1.25 101 | 1.75 107 | 1.10 96 | 1.83 62 | 1.89 73 | 2.26 112 | 1.75 45 | 1.72 43 | 1.94 49 | 1.72 95 | 2.31 93 | 1.74 62 | 1.09 39 | 1.50 48 | 1.21 76 | 1.20 64 | 1.86 146 | 1.08 70 |
Efficient-NL [60] | 86.8 | 1.12 79 | 1.46 58 | 1.15 56 | 1.19 83 | 1.88 97 | 1.07 31 | 1.31 151 | 1.66 82 | 1.12 131 | 1.83 62 | 1.88 69 | 2.23 42 | 1.75 45 | 1.74 66 | 1.94 49 | 1.72 95 | 2.80 160 | 1.73 44 | 1.11 111 | 1.62 131 | 1.21 76 | 1.25 148 | 1.86 146 | 1.08 70 |
ProFlow_ROB [142] | 86.8 | 1.11 55 | 1.51 81 | 1.15 56 | 1.20 89 | 1.91 103 | 1.09 79 | 1.24 83 | 1.70 97 | 1.07 46 | 1.85 98 | 1.98 125 | 2.26 112 | 1.78 138 | 1.77 130 | 1.96 126 | 1.67 34 | 1.90 40 | 1.73 44 | 1.10 64 | 1.63 132 | 1.20 21 | 1.23 123 | 1.84 137 | 1.08 70 |
p-harmonic [29] | 88.0 | 1.11 55 | 1.51 81 | 1.15 56 | 1.38 151 | 2.19 155 | 1.10 92 | 1.26 115 | 1.99 156 | 1.10 96 | 1.88 131 | 1.98 125 | 2.26 112 | 1.76 62 | 1.75 82 | 1.95 80 | 1.69 53 | 2.19 76 | 1.74 62 | 1.10 64 | 1.57 91 | 1.20 21 | 1.20 64 | 1.73 62 | 1.08 70 |
TC/T-Flow [77] | 89.2 | 1.12 79 | 1.52 88 | 1.15 56 | 1.20 89 | 1.92 105 | 1.08 58 | 1.22 47 | 1.66 82 | 1.07 46 | 1.83 62 | 1.89 73 | 2.25 84 | 1.77 102 | 1.76 105 | 1.96 126 | 1.71 84 | 2.11 62 | 1.75 83 | 1.12 136 | 1.73 158 | 1.22 130 | 1.22 104 | 1.80 111 | 1.08 70 |
PWC-Net_RVC [143] | 90.9 | 1.12 79 | 1.64 154 | 1.14 33 | 1.19 83 | 1.86 93 | 1.07 31 | 1.25 101 | 1.84 124 | 1.08 75 | 1.82 48 | 1.91 84 | 2.25 84 | 1.79 161 | 1.79 163 | 1.96 126 | 1.75 140 | 2.47 115 | 1.77 138 | 1.09 39 | 1.53 67 | 1.20 21 | 1.20 64 | 1.83 131 | 1.07 28 |
SIOF [67] | 92.5 | 1.14 137 | 1.60 139 | 1.17 124 | 1.45 158 | 2.27 172 | 1.20 147 | 1.24 83 | 1.76 108 | 1.10 96 | 1.84 84 | 1.93 98 | 2.24 56 | 1.74 36 | 1.71 39 | 1.94 49 | 1.70 65 | 2.07 55 | 1.75 83 | 1.09 39 | 1.54 73 | 1.20 21 | 1.23 123 | 1.79 101 | 1.09 134 |
3DFlow [133] | 93.7 | 1.11 55 | 1.49 73 | 1.14 33 | 1.15 58 | 1.81 86 | 1.07 31 | 1.28 133 | 1.60 60 | 1.08 75 | 1.82 48 | 1.84 47 | 2.25 84 | 1.77 102 | 1.74 66 | 1.98 176 | 1.79 165 | 3.20 184 | 1.78 149 | 1.12 136 | 1.60 117 | 1.21 76 | 1.23 123 | 1.79 101 | 1.08 70 |
Sparse Occlusion [54] | 94.6 | 1.12 79 | 1.58 131 | 1.15 56 | 1.28 123 | 2.13 144 | 1.08 58 | 1.23 73 | 1.63 71 | 1.08 75 | 1.84 84 | 1.93 98 | 2.24 56 | 1.77 102 | 1.76 105 | 1.95 80 | 1.74 132 | 2.82 166 | 1.76 110 | 1.10 64 | 1.61 124 | 1.20 21 | 1.23 123 | 1.82 126 | 1.08 70 |
SVFilterOh [109] | 94.6 | 1.11 55 | 1.45 53 | 1.15 56 | 1.12 36 | 1.61 42 | 1.07 31 | 1.23 73 | 1.55 42 | 1.09 94 | 1.83 62 | 1.84 47 | 2.31 169 | 1.79 161 | 1.78 147 | 2.00 181 | 1.73 115 | 2.33 98 | 1.76 110 | 1.11 111 | 1.49 44 | 1.25 169 | 1.23 123 | 1.77 82 | 1.11 170 |
ComplOF-FED-GPU [35] | 94.9 | 1.12 79 | 1.54 99 | 1.15 56 | 1.19 83 | 1.90 100 | 1.08 58 | 1.33 162 | 1.84 124 | 1.12 131 | 1.84 84 | 1.95 113 | 2.25 84 | 1.76 62 | 1.75 82 | 1.95 80 | 1.70 65 | 2.27 87 | 1.75 83 | 1.11 111 | 1.61 124 | 1.21 76 | 1.23 123 | 1.85 142 | 1.08 70 |
ALD-Flow [66] | 96.1 | 1.13 123 | 1.57 121 | 1.17 124 | 1.21 95 | 1.93 106 | 1.10 92 | 1.24 83 | 1.84 124 | 1.08 75 | 1.83 62 | 1.90 80 | 2.26 112 | 1.77 102 | 1.75 82 | 1.96 126 | 1.70 65 | 1.96 43 | 1.77 138 | 1.09 39 | 1.51 55 | 1.21 76 | 1.23 123 | 1.82 126 | 1.09 134 |
LiteFlowNet [138] | 96.8 | 1.12 79 | 1.60 139 | 1.14 33 | 1.18 77 | 1.83 90 | 1.08 58 | 1.24 83 | 1.89 142 | 1.07 46 | 1.92 156 | 2.27 185 | 2.31 169 | 1.77 102 | 1.77 130 | 1.95 80 | 1.71 84 | 2.69 152 | 1.72 34 | 1.11 111 | 1.76 162 | 1.21 76 | 1.18 39 | 1.76 75 | 1.06 21 |
CLG-TV [48] | 96.8 | 1.13 123 | 1.56 112 | 1.17 124 | 1.36 147 | 2.20 158 | 1.11 107 | 1.27 126 | 1.88 140 | 1.11 123 | 1.86 111 | 1.92 93 | 2.27 133 | 1.76 62 | 1.74 66 | 1.95 80 | 1.68 44 | 1.97 44 | 1.74 62 | 1.10 64 | 1.54 73 | 1.21 76 | 1.22 104 | 1.77 82 | 1.08 70 |
CostFilter [40] | 97.3 | 1.10 31 | 1.46 58 | 1.13 21 | 1.15 58 | 1.71 65 | 1.06 15 | 1.28 133 | 2.12 169 | 1.10 96 | 1.83 62 | 1.91 84 | 2.24 56 | 1.78 138 | 1.78 147 | 1.95 80 | 1.79 165 | 2.18 74 | 1.86 184 | 1.11 111 | 1.61 124 | 1.22 130 | 1.25 148 | 1.89 158 | 1.07 28 |
CompactFlow_ROB [155] | 97.8 | 1.13 123 | 1.60 139 | 1.15 56 | 1.27 119 | 1.95 109 | 1.21 151 | 1.30 147 | 2.18 174 | 1.08 75 | 1.90 149 | 2.18 174 | 2.28 147 | 1.75 45 | 1.73 51 | 1.94 49 | 1.69 53 | 2.34 99 | 1.72 34 | 1.10 64 | 1.57 91 | 1.21 76 | 1.20 64 | 1.83 131 | 1.07 28 |
PBOFVI [189] | 98.6 | 1.12 79 | 1.64 154 | 1.15 56 | 1.30 130 | 2.14 145 | 1.10 92 | 1.27 126 | 1.67 89 | 1.10 96 | 1.85 98 | 1.94 107 | 2.25 84 | 1.77 102 | 1.75 82 | 1.96 126 | 1.71 84 | 2.07 55 | 1.75 83 | 1.11 111 | 1.68 146 | 1.21 76 | 1.21 82 | 1.78 93 | 1.08 70 |
FF++_ROB [141] | 99.0 | 1.10 31 | 1.49 73 | 1.14 33 | 1.18 77 | 1.80 85 | 1.08 58 | 1.25 101 | 1.84 124 | 1.08 75 | 1.87 119 | 1.99 130 | 2.27 133 | 1.78 138 | 1.78 147 | 1.95 80 | 1.78 162 | 2.64 146 | 1.81 170 | 1.10 64 | 1.58 108 | 1.21 76 | 1.20 64 | 1.80 111 | 1.08 70 |
DMF_ROB [135] | 99.0 | 1.12 79 | 1.56 112 | 1.15 56 | 1.26 114 | 2.03 129 | 1.09 79 | 1.35 164 | 2.17 171 | 1.12 131 | 1.87 119 | 1.97 119 | 2.25 84 | 1.76 62 | 1.74 66 | 1.96 126 | 1.69 53 | 2.19 76 | 1.74 62 | 1.11 111 | 1.56 85 | 1.24 162 | 1.20 64 | 1.77 82 | 1.08 70 |
OAR-Flow [123] | 99.8 | 1.13 123 | 1.55 104 | 1.15 56 | 1.23 104 | 1.96 112 | 1.10 92 | 1.24 83 | 1.83 121 | 1.07 46 | 1.82 48 | 1.91 84 | 2.25 84 | 1.77 102 | 1.76 105 | 1.96 126 | 1.73 115 | 2.45 113 | 1.77 138 | 1.12 136 | 1.68 146 | 1.22 130 | 1.21 82 | 1.76 75 | 1.08 70 |
TCOF [69] | 100.7 | 1.12 79 | 1.54 99 | 1.15 56 | 1.45 158 | 2.31 176 | 1.12 114 | 1.22 47 | 1.63 71 | 1.05 27 | 1.84 84 | 1.92 93 | 2.27 133 | 1.76 62 | 1.75 82 | 1.94 49 | 1.72 95 | 2.58 136 | 1.74 62 | 1.11 111 | 1.66 142 | 1.21 76 | 1.26 160 | 1.88 153 | 1.10 151 |
EpicFlow [100] | 100.8 | 1.11 55 | 1.57 121 | 1.15 56 | 1.21 95 | 1.95 109 | 1.09 79 | 1.25 101 | 1.81 115 | 1.08 75 | 1.86 111 | 2.00 134 | 2.27 133 | 1.77 102 | 1.76 105 | 1.96 126 | 1.71 84 | 2.50 119 | 1.75 83 | 1.10 64 | 1.66 142 | 1.21 76 | 1.22 104 | 1.90 161 | 1.08 70 |
LSM_FLOW_RVC [182] | 102.5 | 1.15 143 | 1.82 186 | 1.15 56 | 1.31 135 | 2.10 140 | 1.14 129 | 1.28 133 | 2.07 163 | 1.08 75 | 1.86 111 | 2.07 158 | 2.24 56 | 1.76 62 | 1.75 82 | 1.94 49 | 1.70 65 | 2.51 120 | 1.73 44 | 1.10 64 | 1.58 108 | 1.21 76 | 1.21 82 | 1.88 153 | 1.08 70 |
TC-Flow [46] | 104.1 | 1.11 55 | 1.53 95 | 1.15 56 | 1.22 101 | 1.98 117 | 1.10 92 | 1.26 115 | 1.84 124 | 1.08 75 | 1.87 119 | 2.00 134 | 2.29 154 | 1.77 102 | 1.77 130 | 1.96 126 | 1.73 115 | 2.45 113 | 1.77 138 | 1.10 64 | 1.55 81 | 1.21 76 | 1.22 104 | 1.85 142 | 1.08 70 |
FlowNet2 [120] | 104.6 | 1.23 176 | 1.79 180 | 1.22 164 | 1.28 123 | 1.90 100 | 1.21 151 | 1.27 126 | 1.82 118 | 1.10 96 | 1.85 98 | 2.02 146 | 2.26 112 | 1.78 138 | 1.77 130 | 1.95 80 | 1.70 65 | 2.16 69 | 1.74 62 | 1.10 64 | 1.61 124 | 1.20 21 | 1.20 64 | 1.76 75 | 1.07 28 |
RFlow [88] | 105.5 | 1.12 79 | 1.59 134 | 1.15 56 | 1.34 140 | 2.24 169 | 1.08 58 | 1.25 101 | 1.87 134 | 1.09 94 | 1.87 119 | 2.02 146 | 2.25 84 | 1.77 102 | 1.76 105 | 1.95 80 | 1.68 44 | 2.36 105 | 1.72 34 | 1.11 111 | 1.63 132 | 1.21 76 | 1.25 148 | 1.86 146 | 1.09 134 |
LDOF [28] | 106.6 | 1.17 157 | 1.58 131 | 1.21 158 | 1.34 140 | 1.91 103 | 1.25 164 | 1.30 147 | 2.01 158 | 1.12 131 | 1.88 131 | 2.00 134 | 2.27 133 | 1.76 62 | 1.74 66 | 1.95 80 | 1.69 53 | 2.02 45 | 1.75 83 | 1.10 64 | 1.58 108 | 1.21 76 | 1.21 82 | 1.77 82 | 1.08 70 |
MLDP_OF [87] | 108.1 | 1.11 55 | 1.45 53 | 1.15 56 | 1.21 95 | 1.97 114 | 1.07 31 | 1.22 47 | 1.63 71 | 1.07 46 | 1.87 119 | 1.89 73 | 2.30 160 | 1.78 138 | 1.76 105 | 1.97 164 | 1.85 186 | 2.69 152 | 1.88 186 | 1.11 111 | 1.58 108 | 1.22 130 | 1.23 123 | 1.81 121 | 1.10 151 |
ContinualFlow_ROB [148] | 108.7 | 1.15 143 | 1.66 162 | 1.17 124 | 1.28 123 | 2.00 121 | 1.19 142 | 1.30 147 | 1.97 153 | 1.10 96 | 1.85 98 | 2.01 143 | 2.25 84 | 1.78 138 | 1.80 170 | 1.95 80 | 1.68 44 | 2.18 74 | 1.72 34 | 1.10 64 | 1.57 91 | 1.20 21 | 1.25 148 | 2.10 181 | 1.07 28 |
Fusion [6] | 109.3 | 1.12 79 | 1.66 162 | 1.15 56 | 1.19 83 | 1.82 88 | 1.08 58 | 1.24 83 | 1.66 82 | 1.10 96 | 1.89 140 | 2.04 154 | 2.25 84 | 1.77 102 | 1.80 170 | 1.93 35 | 1.72 95 | 3.03 182 | 1.72 34 | 1.13 151 | 1.74 160 | 1.22 130 | 1.28 171 | 1.89 158 | 1.08 70 |
IAOF [50] | 109.4 | 1.21 171 | 1.66 162 | 1.23 172 | 1.89 193 | 2.64 197 | 1.28 169 | 1.26 115 | 1.87 134 | 1.10 96 | 1.91 150 | 1.92 93 | 2.26 112 | 1.76 62 | 1.75 82 | 1.95 80 | 1.70 65 | 2.34 99 | 1.73 44 | 1.10 64 | 1.57 91 | 1.20 21 | 1.21 82 | 1.79 101 | 1.08 70 |
OFH [38] | 110.0 | 1.12 79 | 1.57 121 | 1.15 56 | 1.29 127 | 2.02 126 | 1.09 79 | 1.28 133 | 2.06 162 | 1.10 96 | 1.84 84 | 1.97 119 | 2.24 56 | 1.77 102 | 1.76 105 | 1.94 49 | 1.72 95 | 2.54 125 | 1.76 110 | 1.12 136 | 1.84 169 | 1.22 130 | 1.24 140 | 1.94 171 | 1.08 70 |
EPMNet [131] | 110.0 | 1.22 172 | 1.81 185 | 1.21 158 | 1.26 114 | 1.86 93 | 1.19 142 | 1.27 126 | 1.82 118 | 1.10 96 | 1.91 150 | 2.26 183 | 2.24 56 | 1.78 138 | 1.77 130 | 1.95 80 | 1.72 95 | 2.31 93 | 1.74 62 | 1.10 64 | 1.61 124 | 1.20 21 | 1.21 82 | 1.83 131 | 1.07 28 |
ResPWCR_ROB [140] | 110.2 | 1.12 79 | 1.56 112 | 1.15 56 | 1.25 109 | 1.98 117 | 1.12 114 | 1.30 147 | 1.90 143 | 1.10 96 | 1.89 140 | 2.08 160 | 2.30 160 | 1.75 45 | 1.76 105 | 1.93 35 | 1.95 192 | 2.31 93 | 2.03 192 | 1.10 64 | 1.57 91 | 1.21 76 | 1.23 123 | 1.93 168 | 1.07 28 |
CBF [12] | 111.0 | 1.12 79 | 1.55 104 | 1.18 137 | 1.29 127 | 2.02 126 | 1.11 107 | 1.25 101 | 1.66 82 | 1.08 75 | 1.89 140 | 1.93 98 | 2.39 179 | 1.76 62 | 1.73 51 | 2.00 181 | 1.70 65 | 2.13 66 | 1.75 83 | 1.12 136 | 1.60 117 | 1.24 162 | 1.24 140 | 1.73 62 | 1.14 183 |
TF+OM [98] | 111.2 | 1.12 79 | 1.57 121 | 1.17 124 | 1.18 77 | 1.76 77 | 1.15 132 | 1.24 83 | 1.85 130 | 1.07 46 | 1.87 119 | 1.98 125 | 2.26 112 | 1.78 138 | 1.77 130 | 1.96 126 | 1.72 95 | 2.20 78 | 1.77 138 | 1.12 136 | 1.66 142 | 1.22 130 | 1.22 104 | 1.76 75 | 1.10 151 |
ROF-ND [105] | 112.5 | 1.12 79 | 1.47 62 | 1.15 56 | 1.26 114 | 2.08 137 | 1.10 92 | 1.22 47 | 1.63 71 | 1.07 46 | 1.96 167 | 2.24 180 | 2.27 133 | 1.76 62 | 1.74 66 | 1.96 126 | 1.73 115 | 2.91 177 | 1.74 62 | 1.15 170 | 1.71 153 | 1.25 169 | 1.28 171 | 2.01 176 | 1.08 70 |
AugFNG_ROB [139] | 113.0 | 1.15 143 | 1.56 112 | 1.20 150 | 1.34 140 | 2.03 129 | 1.22 154 | 1.31 151 | 2.38 181 | 1.11 123 | 1.89 140 | 2.15 171 | 2.26 112 | 1.79 161 | 1.80 170 | 1.95 80 | 1.69 53 | 2.04 47 | 1.73 44 | 1.11 111 | 1.64 138 | 1.20 21 | 1.19 49 | 1.80 111 | 1.06 21 |
Complementary OF [21] | 115.3 | 1.11 55 | 1.60 139 | 1.14 33 | 1.18 77 | 1.90 100 | 1.08 58 | 1.38 173 | 1.81 115 | 1.15 146 | 1.86 111 | 1.99 130 | 2.26 112 | 1.77 102 | 1.78 147 | 1.94 49 | 1.72 95 | 2.54 125 | 1.76 110 | 1.13 151 | 1.83 168 | 1.21 76 | 1.29 175 | 2.17 186 | 1.09 134 |
Modified CLG [34] | 116.7 | 1.13 123 | 1.51 81 | 1.19 147 | 1.58 178 | 2.23 165 | 1.34 176 | 1.31 151 | 2.32 178 | 1.13 142 | 1.88 131 | 2.00 134 | 2.24 56 | 1.77 102 | 1.76 105 | 1.96 126 | 1.72 95 | 2.49 116 | 1.76 110 | 1.10 64 | 1.57 91 | 1.21 76 | 1.21 82 | 1.79 101 | 1.08 70 |
TriFlow [93] | 117.0 | 1.15 143 | 1.70 171 | 1.18 137 | 1.37 150 | 2.09 138 | 1.24 159 | 1.25 101 | 1.87 134 | 1.07 46 | 1.85 98 | 1.97 119 | 2.24 56 | 1.79 161 | 1.79 163 | 1.96 126 | 1.73 115 | 2.35 102 | 1.75 83 | 1.11 111 | 1.61 124 | 1.21 76 | 1.23 123 | 1.79 101 | 1.08 70 |
IIOF-NLDP [129] | 117.7 | 1.11 55 | 1.46 58 | 1.13 21 | 1.25 109 | 2.09 138 | 1.08 58 | 1.29 141 | 1.67 89 | 1.10 96 | 1.88 131 | 1.91 84 | 2.30 160 | 1.76 62 | 1.76 105 | 1.95 80 | 1.82 176 | 3.41 188 | 1.80 165 | 1.24 193 | 3.72 196 | 1.26 178 | 1.25 148 | 1.92 165 | 1.07 28 |
Local-TV-L1 [65] | 118.1 | 1.19 163 | 1.61 145 | 1.23 172 | 1.49 167 | 2.21 160 | 1.23 156 | 1.23 73 | 1.69 95 | 1.07 46 | 1.92 156 | 1.96 117 | 2.39 179 | 1.77 102 | 1.75 82 | 1.96 126 | 1.82 176 | 2.12 64 | 1.89 187 | 1.10 64 | 1.56 85 | 1.21 76 | 1.19 49 | 1.68 44 | 1.10 151 |
FlowNetS+ft+v [110] | 119.7 | 1.15 143 | 1.56 112 | 1.20 150 | 1.48 164 | 2.24 169 | 1.25 164 | 1.28 133 | 1.96 149 | 1.11 123 | 1.86 111 | 1.94 107 | 2.26 112 | 1.78 138 | 1.77 130 | 1.96 126 | 1.70 65 | 2.14 68 | 1.75 83 | 1.12 136 | 1.68 146 | 1.21 76 | 1.22 104 | 1.78 93 | 1.08 70 |
F-TV-L1 [15] | 119.9 | 1.18 159 | 1.64 154 | 1.21 158 | 1.43 157 | 2.23 165 | 1.13 126 | 1.28 133 | 1.97 153 | 1.12 131 | 1.88 131 | 2.00 134 | 2.29 154 | 1.76 62 | 1.77 130 | 1.93 35 | 1.70 65 | 2.10 60 | 1.76 110 | 1.11 111 | 1.63 132 | 1.22 130 | 1.21 82 | 1.71 54 | 1.10 151 |
Occlusion-TV-L1 [63] | 119.9 | 1.12 79 | 1.56 112 | 1.17 124 | 1.40 154 | 2.33 179 | 1.10 92 | 1.26 115 | 1.96 149 | 1.11 123 | 1.91 150 | 2.10 161 | 2.29 154 | 1.76 62 | 1.74 66 | 1.95 80 | 1.74 132 | 2.57 133 | 1.79 160 | 1.12 136 | 1.57 91 | 1.22 130 | 1.22 104 | 1.81 121 | 1.08 70 |
Classic++ [32] | 120.9 | 1.13 123 | 1.59 134 | 1.17 124 | 1.29 127 | 2.10 140 | 1.09 79 | 1.26 115 | 1.86 133 | 1.10 96 | 1.89 140 | 2.01 143 | 2.27 133 | 1.77 102 | 1.76 105 | 1.95 80 | 1.77 157 | 2.55 129 | 1.81 170 | 1.11 111 | 1.60 117 | 1.21 76 | 1.23 123 | 1.80 111 | 1.09 134 |
SimpleFlow [49] | 121.2 | 1.12 79 | 1.55 104 | 1.15 56 | 1.27 119 | 2.02 126 | 1.08 58 | 1.37 172 | 1.85 130 | 1.12 131 | 1.83 62 | 1.89 73 | 2.26 112 | 1.77 102 | 1.76 105 | 1.95 80 | 1.77 157 | 3.34 187 | 1.76 110 | 1.17 181 | 2.76 193 | 1.24 162 | 1.26 160 | 2.07 179 | 1.08 70 |
HBM-GC [103] | 125.3 | 1.15 143 | 1.57 121 | 1.19 147 | 1.22 101 | 1.97 114 | 1.09 79 | 1.20 32 | 1.45 30 | 1.08 75 | 1.87 119 | 1.94 107 | 2.29 154 | 1.81 177 | 1.80 170 | 2.02 189 | 1.81 172 | 3.58 192 | 1.79 160 | 1.12 136 | 1.52 60 | 1.25 169 | 1.23 123 | 1.74 67 | 1.11 170 |
Black & Anandan [4] | 125.3 | 1.19 163 | 1.64 154 | 1.22 164 | 1.64 180 | 2.37 183 | 1.24 159 | 1.41 177 | 2.17 171 | 1.17 157 | 1.92 156 | 2.01 143 | 2.25 84 | 1.78 138 | 1.78 147 | 1.96 126 | 1.69 53 | 2.17 71 | 1.74 62 | 1.11 111 | 1.63 132 | 1.20 21 | 1.22 104 | 1.77 82 | 1.08 70 |
Steered-L1 [116] | 126.9 | 1.11 55 | 1.59 134 | 1.15 56 | 1.21 95 | 1.94 108 | 1.10 92 | 1.33 162 | 1.76 108 | 1.15 146 | 1.93 161 | 2.04 154 | 2.34 173 | 1.78 138 | 1.78 147 | 1.95 80 | 1.73 115 | 2.51 120 | 1.78 149 | 1.13 151 | 1.72 155 | 1.22 130 | 1.24 140 | 1.82 126 | 1.10 151 |
Adaptive [20] | 127.2 | 1.14 137 | 1.63 151 | 1.18 137 | 1.46 160 | 2.36 182 | 1.11 107 | 1.26 115 | 1.88 140 | 1.10 96 | 1.87 119 | 1.97 119 | 2.27 133 | 1.78 138 | 1.77 130 | 1.95 80 | 1.74 132 | 2.52 122 | 1.78 149 | 1.11 111 | 1.66 142 | 1.20 21 | 1.24 140 | 1.85 142 | 1.10 151 |
GraphCuts [14] | 127.5 | 1.20 168 | 1.76 178 | 1.20 150 | 1.28 123 | 1.88 97 | 1.23 156 | 1.55 187 | 1.64 77 | 1.19 159 | 1.93 161 | 2.03 153 | 2.29 154 | 1.76 62 | 1.75 82 | 1.93 35 | 1.67 34 | 2.42 108 | 1.70 28 | 1.14 161 | 1.78 167 | 1.23 157 | 1.26 160 | 1.88 153 | 1.10 151 |
IRR-PWC_RVC [180] | 127.8 | 1.19 163 | 1.89 189 | 1.19 147 | 1.30 130 | 2.00 121 | 1.23 156 | 1.31 151 | 2.33 179 | 1.10 96 | 1.91 150 | 2.24 180 | 2.24 56 | 1.79 161 | 1.79 163 | 1.96 126 | 1.73 115 | 2.41 107 | 1.75 83 | 1.10 64 | 1.64 138 | 1.20 21 | 1.26 160 | 2.14 184 | 1.07 28 |
CRTflow [81] | 128.4 | 1.15 143 | 1.62 147 | 1.18 137 | 1.34 140 | 2.21 160 | 1.10 92 | 1.32 160 | 2.08 164 | 1.19 159 | 1.87 119 | 1.95 113 | 2.32 171 | 1.78 138 | 1.77 130 | 1.96 126 | 1.71 84 | 2.06 50 | 1.76 110 | 1.11 111 | 1.63 132 | 1.22 130 | 1.22 104 | 1.80 111 | 1.10 151 |
CVENG22+RIC [199] | 129.6 | 1.12 79 | 1.56 112 | 1.15 56 | 1.26 114 | 2.05 132 | 1.09 79 | 1.27 126 | 2.04 161 | 1.10 96 | 1.91 150 | 2.18 174 | 2.28 147 | 1.78 138 | 1.77 130 | 1.97 164 | 1.74 132 | 2.62 142 | 1.76 110 | 1.12 136 | 1.75 161 | 1.21 76 | 1.29 175 | 2.18 187 | 1.09 134 |
Correlation Flow [76] | 131.0 | 1.11 55 | 1.51 81 | 1.13 21 | 1.33 138 | 2.23 165 | 1.08 58 | 1.24 83 | 1.63 71 | 1.08 75 | 1.87 119 | 1.91 84 | 2.30 160 | 1.81 177 | 1.78 147 | 2.06 194 | 1.82 176 | 3.47 190 | 1.79 160 | 1.15 170 | 1.97 176 | 1.25 169 | 1.26 160 | 1.91 163 | 1.10 151 |
Nguyen [33] | 131.8 | 1.25 179 | 1.63 151 | 1.30 184 | 1.77 190 | 2.38 185 | 1.36 177 | 1.31 151 | 2.42 182 | 1.14 144 | 1.96 167 | 2.06 157 | 2.26 112 | 1.77 102 | 1.76 105 | 1.94 49 | 1.69 53 | 2.43 112 | 1.73 44 | 1.14 161 | 1.92 175 | 1.22 130 | 1.21 82 | 1.79 101 | 1.08 70 |
2D-CLG [1] | 131.9 | 1.18 159 | 1.58 131 | 1.22 164 | 1.67 183 | 2.26 171 | 1.41 186 | 1.38 173 | 2.08 164 | 1.19 159 | 1.94 165 | 2.02 146 | 2.25 84 | 1.77 102 | 1.75 82 | 1.95 80 | 1.71 84 | 2.63 144 | 1.75 83 | 1.13 151 | 1.84 169 | 1.22 130 | 1.22 104 | 1.77 82 | 1.08 70 |
OFRF [132] | 132.8 | 1.24 177 | 1.64 154 | 1.26 179 | 1.46 160 | 2.18 152 | 1.24 159 | 1.26 115 | 1.87 134 | 1.10 96 | 1.86 111 | 1.91 84 | 2.26 112 | 1.78 138 | 1.78 147 | 1.95 80 | 1.79 165 | 2.67 148 | 1.80 165 | 1.13 151 | 1.72 155 | 1.21 76 | 1.25 148 | 1.88 153 | 1.07 28 |
AdaConv-v1 [124] | 132.8 | 1.30 187 | 1.76 178 | 1.33 186 | 1.57 176 | 2.05 132 | 1.58 193 | 1.55 187 | 2.33 179 | 1.48 196 | 2.16 189 | 2.37 189 | 2.46 187 | 1.72 33 | 1.68 33 | 1.92 33 | 1.67 34 | 1.92 42 | 1.73 44 | 1.15 170 | 1.73 158 | 1.31 194 | 1.18 39 | 1.60 35 | 1.16 194 |
TriangleFlow [30] | 133.2 | 1.15 143 | 1.66 162 | 1.17 124 | 1.32 137 | 2.11 142 | 1.09 79 | 1.29 141 | 1.81 115 | 1.13 142 | 1.89 140 | 2.02 146 | 2.30 160 | 1.76 62 | 1.76 105 | 1.93 35 | 1.74 132 | 2.67 148 | 1.75 83 | 1.14 161 | 2.02 179 | 1.24 162 | 1.31 181 | 2.13 183 | 1.09 134 |
BriefMatch [122] | 133.7 | 1.12 79 | 1.55 104 | 1.15 56 | 1.24 105 | 1.93 106 | 1.15 132 | 1.36 168 | 1.73 103 | 1.19 159 | 2.04 181 | 2.11 164 | 2.53 194 | 1.77 102 | 1.76 105 | 1.98 176 | 1.92 190 | 2.59 137 | 1.97 190 | 1.11 111 | 1.60 117 | 1.22 130 | 1.23 123 | 1.82 126 | 1.10 151 |
CNN-flow-warp+ref [115] | 133.8 | 1.12 79 | 1.47 62 | 1.18 137 | 1.36 147 | 2.14 145 | 1.15 132 | 1.35 164 | 2.22 175 | 1.14 144 | 2.05 182 | 2.19 176 | 2.41 183 | 1.78 138 | 1.77 130 | 1.97 164 | 1.72 95 | 2.49 116 | 1.76 110 | 1.14 161 | 1.99 177 | 1.22 130 | 1.21 82 | 1.80 111 | 1.08 70 |
HBpMotionGpu [43] | 134.2 | 1.24 177 | 1.80 182 | 1.28 181 | 1.68 185 | 2.42 189 | 1.38 178 | 1.23 73 | 1.69 95 | 1.10 96 | 1.95 166 | 2.15 171 | 2.30 160 | 1.77 102 | 1.77 130 | 1.96 126 | 1.75 140 | 2.57 133 | 1.78 149 | 1.09 39 | 1.50 48 | 1.20 21 | 1.26 160 | 1.86 146 | 1.12 173 |
Shiralkar [42] | 134.2 | 1.13 123 | 1.63 151 | 1.15 56 | 1.41 155 | 2.21 160 | 1.09 79 | 1.36 168 | 2.54 185 | 1.15 146 | 1.98 176 | 2.23 179 | 2.24 56 | 1.77 102 | 1.78 147 | 1.92 33 | 1.76 148 | 2.85 170 | 1.78 149 | 1.15 170 | 2.13 185 | 1.22 130 | 1.25 148 | 2.02 177 | 1.07 28 |
IAOF2 [51] | 135.8 | 1.19 163 | 1.69 170 | 1.20 150 | 1.50 171 | 2.41 187 | 1.20 147 | 1.25 101 | 1.83 121 | 1.11 123 | 1.91 150 | 2.02 146 | 2.28 147 | 1.81 177 | 1.85 186 | 1.96 126 | 1.74 132 | 2.88 173 | 1.75 83 | 1.10 64 | 1.57 91 | 1.20 21 | 1.26 160 | 1.84 137 | 1.09 134 |
ACK-Prior [27] | 136.9 | 1.11 55 | 1.54 99 | 1.14 33 | 1.17 74 | 1.87 95 | 1.07 31 | 1.38 173 | 1.74 105 | 1.15 146 | 1.88 131 | 1.98 125 | 2.27 133 | 1.81 177 | 1.80 170 | 2.02 189 | 1.81 172 | 2.70 154 | 1.82 177 | 1.17 181 | 1.69 151 | 1.27 183 | 1.33 185 | 1.93 168 | 1.13 178 |
BlockOverlap [61] | 139.0 | 1.20 168 | 1.60 139 | 1.25 175 | 1.49 167 | 2.18 152 | 1.32 174 | 1.26 115 | 1.60 60 | 1.12 131 | 1.96 167 | 1.97 119 | 2.48 188 | 1.80 170 | 1.77 130 | 2.04 193 | 1.80 169 | 2.27 87 | 1.86 184 | 1.12 136 | 1.54 73 | 1.26 178 | 1.19 49 | 1.66 39 | 1.12 173 |
Ad-TV-NDC [36] | 141.4 | 1.34 188 | 1.70 171 | 1.38 188 | 1.68 185 | 2.33 179 | 1.38 178 | 1.26 115 | 1.87 134 | 1.10 96 | 1.97 173 | 1.99 130 | 2.34 173 | 1.80 170 | 1.79 163 | 1.97 164 | 1.75 140 | 2.06 50 | 1.82 177 | 1.11 111 | 1.59 115 | 1.21 76 | 1.22 104 | 1.73 62 | 1.10 151 |
LocallyOriented [52] | 141.5 | 1.15 143 | 1.62 147 | 1.20 150 | 1.48 164 | 2.30 174 | 1.15 132 | 1.31 151 | 1.96 149 | 1.11 123 | 1.92 156 | 2.10 161 | 2.29 154 | 1.77 102 | 1.77 130 | 1.95 80 | 1.82 176 | 2.56 131 | 1.85 182 | 1.12 136 | 1.68 146 | 1.21 76 | 1.25 148 | 1.87 152 | 1.09 134 |
TV-L1-improved [17] | 141.6 | 1.13 123 | 1.62 147 | 1.18 137 | 1.46 160 | 2.35 181 | 1.12 114 | 1.35 164 | 1.80 113 | 1.15 146 | 1.88 131 | 2.00 134 | 2.27 133 | 1.78 138 | 1.78 147 | 1.95 80 | 1.75 140 | 2.70 154 | 1.77 138 | 1.14 161 | 2.09 183 | 1.22 130 | 1.25 148 | 1.86 146 | 1.10 151 |
WRT [146] | 142.7 | 1.12 79 | 1.51 81 | 1.15 56 | 1.35 145 | 2.05 132 | 1.09 79 | 1.48 183 | 1.70 97 | 1.15 146 | 1.89 140 | 1.94 107 | 2.27 133 | 1.80 170 | 1.81 179 | 1.97 164 | 1.83 181 | 3.61 196 | 1.79 160 | 1.29 196 | 4.39 198 | 1.30 190 | 1.39 190 | 2.72 195 | 1.07 28 |
StereoOF-V1MT [117] | 145.4 | 1.14 137 | 1.72 175 | 1.15 56 | 1.36 147 | 2.15 147 | 1.08 58 | 1.46 181 | 2.45 183 | 1.19 159 | 2.11 188 | 2.33 188 | 2.37 177 | 1.80 170 | 1.83 182 | 1.95 80 | 1.81 172 | 2.84 168 | 1.82 177 | 1.17 181 | 2.07 181 | 1.24 162 | 1.21 82 | 1.80 111 | 1.07 28 |
TVL1_RVC [175] | 148.2 | 1.28 185 | 1.67 166 | 1.32 185 | 1.78 191 | 2.45 192 | 1.39 183 | 1.29 141 | 2.17 171 | 1.12 131 | 1.97 173 | 2.07 158 | 2.28 147 | 1.79 161 | 1.79 163 | 1.96 126 | 1.73 115 | 2.52 122 | 1.76 110 | 1.13 151 | 1.86 172 | 1.22 130 | 1.22 104 | 1.80 111 | 1.08 70 |
Rannacher [23] | 149.4 | 1.14 137 | 1.65 159 | 1.18 137 | 1.47 163 | 2.39 186 | 1.12 114 | 1.36 168 | 2.00 157 | 1.16 156 | 1.88 131 | 2.04 154 | 2.28 147 | 1.79 161 | 1.78 147 | 1.95 80 | 1.76 148 | 2.74 158 | 1.78 149 | 1.14 161 | 2.05 180 | 1.22 130 | 1.25 148 | 1.91 163 | 1.10 151 |
Filter Flow [19] | 149.6 | 1.18 159 | 1.61 145 | 1.21 158 | 1.57 176 | 2.27 172 | 1.38 178 | 1.27 126 | 1.85 130 | 1.12 131 | 1.96 167 | 1.97 119 | 2.35 176 | 1.79 161 | 1.78 147 | 2.00 181 | 1.73 115 | 2.28 89 | 1.78 149 | 1.13 151 | 1.68 146 | 1.22 130 | 1.27 169 | 1.84 137 | 1.13 178 |
TI-DOFE [24] | 149.8 | 1.37 191 | 1.74 176 | 1.41 191 | 1.91 194 | 2.51 195 | 1.51 191 | 1.41 177 | 2.56 186 | 1.20 168 | 2.06 184 | 2.13 167 | 2.30 160 | 1.78 138 | 1.79 163 | 1.95 80 | 1.69 53 | 2.16 69 | 1.73 44 | 1.13 151 | 1.71 153 | 1.22 130 | 1.27 169 | 1.83 131 | 1.09 134 |
SegOF [10] | 151.5 | 1.15 143 | 1.60 139 | 1.20 150 | 1.38 151 | 2.07 136 | 1.20 147 | 1.48 183 | 2.29 176 | 1.21 169 | 1.93 161 | 2.30 187 | 2.25 84 | 1.78 138 | 1.78 147 | 1.96 126 | 1.77 157 | 3.01 181 | 1.78 149 | 1.18 186 | 2.46 192 | 1.25 169 | 1.23 123 | 1.94 171 | 1.08 70 |
Horn & Schunck [3] | 151.5 | 1.19 163 | 1.65 159 | 1.22 164 | 1.68 185 | 2.41 187 | 1.28 169 | 1.47 182 | 2.45 183 | 1.22 170 | 2.02 178 | 2.14 169 | 2.27 133 | 1.80 170 | 1.80 170 | 1.97 164 | 1.70 65 | 2.28 89 | 1.74 62 | 1.14 161 | 1.77 165 | 1.22 130 | 1.25 148 | 1.84 137 | 1.09 134 |
StereoFlow [44] | 151.7 | 1.47 194 | 2.09 197 | 1.38 188 | 1.76 189 | 2.42 189 | 1.38 178 | 1.26 115 | 2.03 160 | 1.10 96 | 1.89 140 | 2.00 134 | 2.26 112 | 2.00 196 | 2.23 196 | 1.98 176 | 1.84 185 | 3.59 193 | 1.76 110 | 1.09 39 | 1.55 81 | 1.21 76 | 1.33 185 | 2.05 178 | 1.09 134 |
NL-TV-NCC [25] | 154.0 | 1.13 123 | 1.59 134 | 1.15 56 | 1.27 119 | 2.15 147 | 1.09 79 | 1.31 151 | 1.91 145 | 1.15 146 | 1.96 167 | 2.13 167 | 2.39 179 | 1.85 189 | 1.80 170 | 2.13 196 | 1.77 157 | 2.81 163 | 1.78 149 | 1.16 180 | 1.76 162 | 1.28 185 | 1.31 181 | 1.90 161 | 1.15 189 |
UnFlow [127] | 154.5 | 1.22 172 | 1.80 182 | 1.22 164 | 1.54 174 | 2.19 155 | 1.22 154 | 1.40 176 | 2.64 187 | 1.19 159 | 1.89 140 | 2.11 164 | 2.24 56 | 1.83 184 | 1.87 188 | 1.96 126 | 1.79 165 | 3.47 190 | 1.75 83 | 1.12 136 | 1.77 165 | 1.21 76 | 1.38 189 | 2.23 188 | 1.09 134 |
Dynamic MRF [7] | 154.8 | 1.12 79 | 1.68 168 | 1.15 56 | 1.30 130 | 2.21 160 | 1.10 92 | 1.41 177 | 2.71 188 | 1.19 159 | 2.10 187 | 2.38 190 | 2.42 185 | 1.78 138 | 1.80 170 | 1.95 80 | 1.82 176 | 3.60 194 | 1.80 165 | 1.17 181 | 2.24 187 | 1.23 157 | 1.28 171 | 1.95 173 | 1.10 151 |
SPSA-learn [13] | 157.2 | 1.18 159 | 1.70 171 | 1.21 158 | 1.50 171 | 2.22 164 | 1.25 164 | 1.44 180 | 2.14 170 | 1.19 159 | 1.96 167 | 2.02 146 | 2.25 84 | 1.80 170 | 1.82 180 | 1.96 126 | 1.73 115 | 2.80 160 | 1.75 83 | 1.27 195 | 3.84 197 | 1.32 195 | 1.44 194 | 2.80 196 | 1.08 70 |
Bartels [41] | 158.4 | 1.16 156 | 1.68 168 | 1.21 158 | 1.30 130 | 2.11 142 | 1.20 147 | 1.28 133 | 1.80 113 | 1.15 146 | 2.00 177 | 2.14 169 | 2.51 192 | 1.84 185 | 1.78 147 | 2.14 198 | 2.07 197 | 2.72 156 | 2.13 196 | 1.13 151 | 1.56 85 | 1.30 190 | 1.26 160 | 1.80 111 | 1.17 195 |
WOLF_ROB [144] | 162.4 | 1.22 172 | 2.04 194 | 1.20 150 | 1.53 173 | 2.32 177 | 1.15 132 | 1.35 164 | 1.96 149 | 1.12 131 | 1.93 161 | 2.21 177 | 2.37 177 | 1.81 177 | 1.84 183 | 1.97 164 | 1.86 188 | 3.30 186 | 1.83 181 | 1.15 170 | 2.00 178 | 1.22 130 | 1.29 175 | 2.08 180 | 1.07 28 |
H+S_RVC [176] | 169.2 | 1.22 172 | 1.67 166 | 1.25 175 | 1.66 182 | 2.19 155 | 1.39 183 | 1.71 194 | 3.33 195 | 1.41 194 | 2.28 193 | 2.27 185 | 2.33 172 | 1.82 183 | 1.84 183 | 1.98 176 | 1.73 115 | 2.88 173 | 1.74 62 | 1.19 188 | 2.07 181 | 1.25 169 | 1.28 171 | 1.85 142 | 1.10 151 |
GroupFlow [9] | 170.9 | 1.28 185 | 2.00 193 | 1.26 179 | 1.49 167 | 2.16 150 | 1.28 169 | 1.62 191 | 2.95 193 | 1.31 187 | 1.97 173 | 2.26 183 | 2.30 160 | 1.87 195 | 1.94 195 | 1.97 164 | 1.83 181 | 3.65 197 | 1.78 149 | 1.15 170 | 2.15 186 | 1.22 130 | 1.34 187 | 2.29 190 | 1.07 28 |
2bit-BM-tele [96] | 171.7 | 1.20 168 | 1.71 174 | 1.25 175 | 1.49 167 | 2.37 183 | 1.26 167 | 1.29 141 | 1.70 97 | 1.19 159 | 2.02 178 | 2.16 173 | 2.52 193 | 1.86 194 | 1.84 183 | 2.10 195 | 2.00 193 | 3.60 194 | 2.00 191 | 1.29 196 | 3.46 195 | 1.38 197 | 1.24 140 | 1.75 71 | 1.18 196 |
Learning Flow [11] | 172.2 | 1.17 157 | 1.75 177 | 1.20 150 | 1.48 164 | 2.32 177 | 1.15 132 | 1.51 186 | 2.81 191 | 1.22 170 | 2.05 182 | 2.24 180 | 2.40 182 | 1.85 189 | 1.88 189 | 2.03 191 | 1.78 162 | 2.67 148 | 1.81 170 | 1.15 170 | 1.87 174 | 1.23 157 | 1.34 187 | 1.97 174 | 1.12 173 |
SILK [80] | 173.2 | 1.26 182 | 1.80 182 | 1.29 182 | 1.78 191 | 2.43 191 | 1.38 178 | 1.59 190 | 2.72 189 | 1.26 183 | 2.08 185 | 2.21 177 | 2.41 183 | 1.80 170 | 1.82 180 | 1.97 164 | 1.85 186 | 2.59 137 | 1.92 189 | 1.13 151 | 1.76 162 | 1.23 157 | 1.26 160 | 1.88 153 | 1.09 134 |
Heeger++ [102] | 174.5 | 1.26 182 | 1.96 192 | 1.22 164 | 1.55 175 | 2.15 147 | 1.24 159 | 1.96 195 | 3.35 196 | 1.39 193 | 2.27 191 | 2.43 192 | 2.50 190 | 1.85 189 | 1.90 193 | 1.98 176 | 1.83 181 | 2.97 180 | 1.81 170 | 1.20 189 | 2.36 188 | 1.23 157 | 1.29 175 | 2.16 185 | 1.07 28 |
SLK [47] | 175.8 | 1.34 188 | 1.79 180 | 1.39 190 | 1.72 188 | 2.23 165 | 1.45 189 | 1.65 193 | 2.79 190 | 1.31 187 | 2.30 194 | 2.55 196 | 2.45 186 | 1.84 185 | 1.91 194 | 1.94 49 | 1.77 157 | 2.81 163 | 1.77 138 | 1.20 189 | 2.38 189 | 1.26 178 | 1.30 179 | 2.12 182 | 1.11 170 |
HCIC-L [97] | 176.5 | 1.68 198 | 2.05 196 | 1.76 198 | 1.59 179 | 2.05 132 | 1.57 192 | 1.48 183 | 2.02 159 | 1.25 180 | 2.03 180 | 2.12 166 | 2.34 173 | 1.81 177 | 1.79 163 | 2.03 191 | 1.81 172 | 2.59 137 | 1.82 177 | 1.17 181 | 1.72 155 | 1.28 185 | 1.48 195 | 2.25 189 | 1.13 178 |
Adaptive flow [45] | 178.9 | 1.46 192 | 1.85 187 | 1.50 192 | 1.91 194 | 2.49 193 | 1.66 195 | 1.36 168 | 1.90 143 | 1.22 170 | 2.08 185 | 2.10 161 | 2.49 189 | 1.85 189 | 1.88 189 | 2.00 181 | 1.83 181 | 3.46 189 | 1.81 170 | 1.15 170 | 1.65 141 | 1.28 185 | 1.30 179 | 1.93 168 | 1.14 183 |
FFV1MT [104] | 182.8 | 1.25 179 | 1.93 190 | 1.24 174 | 1.65 181 | 2.20 158 | 1.41 186 | 1.96 195 | 4.00 197 | 1.44 195 | 2.27 191 | 2.43 192 | 2.50 190 | 1.85 189 | 1.88 189 | 2.00 181 | 1.80 169 | 2.65 147 | 1.81 170 | 1.21 191 | 2.44 191 | 1.25 169 | 1.42 193 | 2.32 191 | 1.13 178 |
FOLKI [16] | 184.1 | 1.59 195 | 1.94 191 | 1.70 195 | 1.92 196 | 2.49 193 | 1.58 193 | 1.56 189 | 3.12 194 | 1.34 191 | 2.42 196 | 2.47 194 | 2.74 197 | 1.84 185 | 1.89 192 | 2.00 181 | 1.80 169 | 2.42 108 | 1.85 182 | 1.18 186 | 2.09 183 | 1.26 178 | 1.32 183 | 1.92 165 | 1.14 183 |
PGAM+LK [55] | 185.4 | 1.46 192 | 2.04 194 | 1.50 192 | 1.67 183 | 2.30 174 | 1.47 190 | 1.62 191 | 2.93 192 | 1.33 190 | 2.38 195 | 2.52 195 | 2.71 195 | 1.84 185 | 1.86 187 | 2.00 181 | 1.88 189 | 3.05 183 | 1.89 187 | 1.15 170 | 1.84 169 | 1.25 169 | 1.32 183 | 1.97 174 | 1.15 189 |
Pyramid LK [2] | 187.2 | 1.63 196 | 1.88 188 | 1.73 197 | 2.11 197 | 2.56 196 | 1.80 197 | 2.58 197 | 2.31 177 | 1.71 197 | 3.26 198 | 5.81 197 | 3.03 198 | 2.01 197 | 2.30 197 | 1.97 164 | 1.78 162 | 2.59 137 | 1.81 170 | 1.21 191 | 2.42 190 | 1.27 183 | 1.63 196 | 3.08 197 | 1.12 173 |
Periodicity [79] | 196.5 | 1.64 197 | 2.35 198 | 1.70 195 | 2.45 198 | 2.65 198 | 2.00 198 | 2.96 198 | 4.90 198 | 2.28 198 | 2.73 197 | 5.99 198 | 2.71 195 | 2.16 198 | 2.49 198 | 2.13 196 | 2.13 198 | 3.66 198 | 2.11 195 | 1.24 193 | 2.90 194 | 1.30 190 | 1.66 197 | 2.56 193 | 1.28 197 |
AVG_FLOW_ROB [137] | 199.0 | 4.30 199 | 6.33 199 | 2.92 199 | 3.95 199 | 3.86 199 | 3.16 199 | 6.29 199 | 8.14 199 | 4.95 199 | 6.32 199 | 11.3 199 | 4.90 199 | 2.85 199 | 3.63 199 | 2.22 199 | 4.02 199 | 8.94 199 | 2.36 199 | 2.21 199 | 4.62 199 | 1.53 198 | 3.43 199 | 4.05 199 | 2.93 199 |
Method | time* | frames | color | Reference and notes | |
[1] 2D-CLG | 844 | 2 | gray | The 2D-CLG method by Bruhn et al. as implemented by Stefan Roth. [A. Bruhn, J. Weickert, and C. Schnörr. Lucas/Kanade meets Horn/Schunck: combining local and global optic flow methods. IJCV 63(3), 2005.] Parameters were set to match the published performance on Yosemite sequence, which may not be optimal for other sequences. | |
[2] Pyramid LK | 12 | 2 | color | A modification of Bouguet's pyramidal implementation of Lucas-Kanade. | |
[3] Horn & Schunck | 49 | 2 | gray | A modern Matlab implementation of the Horn & Schunck method by Deqing Sun. Parameters set to optimize AAE on all training data. | |
[4] Black & Anandan | 328 | 2 | gray | A modern Matlab implementation of the Black & Anandan method by Deqing Sun. | |
[5] Brox et al. | 18 | 2 | color | T. Brox, A. Bruhn, N. Papenberg, and J. Weickert. High accuracy optical flow estimation based on a theory for warping. ECCV 2004. (Improved using separate robust functions as proposed in A. Bruhn and J. Weickert, Towards ultimate motion estimation, ICCV 2005; improved by training on the training set.) | |
[6] Fusion | 2,666 | 2 | color | V. Lempitsky, S. Roth, and C. Rother. Discrete-continuous optimization for optical flow estimation. CVPR 2008. | |
[7] Dynamic MRF | 366 | 2 | gray | B. Glocker, N. Paragios, N. Komodakis, G. Tziritas, and N. Navab. Optical flow estimation with uncertainties through dynamic MRFs. CVPR 2008. (Method improved since publication.) | |
[8] Second-order prior | 14 | 2 | gray | W. Trobin, T. Pock, D. Cremers, and H. Bischof. An unbiased second-order prior for high-accuracy motion estimation. DAGM 2008. (Method improved since publication; for details see W. Trobin, Ph.D. thesis, 2009.) | |
[9] GroupFlow | 600 | 2 | gray | X. Ren. Local Grouping for Optical Flow. CVPR 2008. | |
[10] SegOF | 60 | 2 | color | L. Xu, J. Chen, and J. Jia. Segmentation based variational model for accurate optical flow estimation. ECCV 2008. Code available. | |
[11] Learning Flow | 825 | 2 | gray | D. Sun, S. Roth, J.P. Lewis, and M. Black. Learning optical flow (SRF-LFC). ECCV 2008. | |
[12] CBF | 69 | 2 | color | W. Trobin, T. Pock, D. Cremers, and H. Bischof. Continuous energy minimization via repeated binary fusion. ECCV 2008. (Method improved since publication; for details see W. Trobin, Ph.D. thesis, 2009.) | |
[13] SPSA-learn | 200 | 2 | color | Y. Li and D. Huttenlocher. Learning for optical flow using stochastic optimization. ECCV 2008. | |
[14] GraphCuts | 1,200 | 2 | color | T. Cooke. Two applications of graph-cuts to image processing. DICTA 2008. | |
[15] F-TV-L1 | 8 | 2 | gray | A. Wedel, T. Pock, J. Braun, U. Franke, and D. Cremers. Duality TV-L1 flow with fundamental matrix prior. IVCNZ 2008. | |
[16] FOLKI | 1.4 | 2 | gray | G. Le Besnerais and F. Champagnat. Dense optical flow by iterative local window registration. ICIP 2005. | |
[17] TV-L1-improved | 2.9 | 2 | gray | A. Wedel, T. Pock, C. Zach, H. Bischof, and D. Cremers. An improved algorithm for TV-L1 optical flow computation. Proceedings of the Dagstuhl Visual Motion Analysis Workshop 2008. Code at GPU4Vision. | |
[18] DPOF | 287 | 2 | color | C. Lei and Y.-H. Yang. Optical flow estimation on coarse-to-fine region-trees using discrete optimization. ICCV 2009. (Method improved since publication.) | |
[19] Filter Flow | 34,000 | 2 | color | S. Seitz and S. Baker. Filter flow. ICCV 2009. | |
[20] Adaptive | 9.2 | 2 | gray | A. Wedel, D. Cremers, T. Pock, and H. Bischof. Structure- and motion-adaptive regularization for high accuracy optic flow. ICCV 2009. | |
[21] Complementary OF | 44 | 2 | color | H. Zimmer, A. Bruhn, J. Weickert, L. Valgaerts, A. Salgado, B. Rosenhahn, and H.-P. Seidel. Complementary optic flow. EMMCVPR 2009. | |
[22] Aniso. Huber-L1 | 2 | 2 | gray | M. Werlberger, W. Trobin, T. Pock, A. Wedel, D. Cremers, and H. Bischof. Anisotropic Huber-L1 optical flow. BMVC 2009. Code at GPU4Vision. | |
[23] Rannacher | 0.12 | 2 | gray | J. Rannacher. Realtime 3D motion estimation on graphics hardware. Bachelor thesis, Heidelberg University, 2009. | |
[24] TI-DOFE | 260 | 2 | gray | C. Cassisa, S. Simoens, and V. Prinet. Two-frame optical flow formulation in an unwarped multiresolution scheme. CIARP 2009. | |
[25] NL-TV-NCC | 20 | 2 | color | M. Werlberger, T. Pock, and H. Bischof. Motion estimation with non-local total variation regularization. CVPR 2010. | |
[26] MDP-Flow | 188 | 2 | color | L. Xu, J. Jia, and Y. Matsushita. Motion detail preserving optical flow estimation. CVPR 2010. | |
[27] ACK-Prior | 5872 | 2 | color | K. Lee, D. Kwon, I. Yun, and S. Lee. Optical flow estimation with adaptive convolution kernel prior on discrete framework. CVPR 2010. | |
[28] LDOF | 122 | 2 | color | T. Brox and J. Malik. Large displacement optical flow: descriptor matching in variational motion estimation. PAMI 33(3):500-513, 2011. | |
[29] p-harmonic | 565 | 2 | gray | J. Gai and R. Stevenson. Optical flow estimation with p-harmonic regularization. ICIP 2010. | |
[30] TriangleFlow | 4200 | 2 | gray | B. Glocker, H. Heibel, N. Navab, P. Kohli, and C. Rother. TriangleFlow: Optical flow with triangulation-based higher-order likelihoods. ECCV 2010. | |
[31] Classic+NL | 972 | 2 | color | D. Sun, S. Roth, and M. Black. Secrets of optical flow estimation and their principles. CVPR 2010. Matlab code. | |
[32] Classic++ | 486 | 2 | gray | A modern implementation of the classical formulation descended from Horn & Schunck and Black & Anandan; see D. Sun, S. Roth, and M. Black, Secrets of optical flow estimation and their principles, CVPR 2010. | |
[33] Nguyen | 33 | 2 | gray | D. Nguyen. Tuning optical flow estimation with image-driven functions. ICRA 2011. | |
[34] Modified CLG | 133 | 2 | gray | R. Fezzani, F. Champagnat, and G. Le Besnerais. Combined local global method for optic flow computation. EUSIPCO 2010. | |
[35] ComplOF-FED-GPU | 0.97 | 2 | color | P. Gwosdek, H. Zimmer, S. Grewenig, A. Bruhn, and J. Weickert. A highly efficient GPU implementation for variational optic flow based on the Euler-Lagrange framework. CVGPU Workshop 2010. | |
[36] Ad-TV-NDC | 35 | 2 | gray | M. Nawaz. Motion estimation with adaptive regularization and neighborhood dependent constraint. DICTA 2010. | |
[37] Layers++ | 18206 | 2 | color | D. Sun, E. Sudderth, and M. Black. Layered image motion with explicit occlusions, temporal consistency, and depth ordering. NIPS 2010. | |
[38] OFH | 620 | 3 | color | H. Zimmer, A. Bruhn, J. Weickert. Optic flow in harmony. IJCV 93(3) 2011. | |
[39] LSM | 1615 | 2 | color | K. Jia, X. Wang, and X. Tang. Optical flow estimation using learned sparse model. ICCV 2011. | |
[40] CostFilter | 55 | 2 | color | C. Rhemann, A. Hosni, M. Bleyer, C. Rother, and M. Gelautz. Fast cost-volume filtering for visual correspondence and beyond. CVPR 2011. | |
[41] Bartels | 0.15 | 2 | gray | C. Bartels and G. de Haan. Smoothness constraints in recursive search motion estimation for picture rate conversion. IEEE TCSVT 2010. Version improved since publication: mapped on GPU. | |
[42] Shiralkar | 600 | 2 | gray | M. Shiralkar and R. Schalkoff. A self organization-based optical flow estimator with GPU implementation. MVA 23(6):1229-1242. | |
[43] HBpMotionGpu | 1000 | 5 | gray | S. Grauer-Gray and C. Kambhamettu. Hierarchical belief propagation to reduce search space using CUDA for stereo and motion estimation. WACV 2009. (Method improved since publication.) | |
[44] StereoFlow | 7200 | 2 | color | G. Rosman, S. Shem-Tov, D. Bitton, T. Nir, G. Adiv, R. Kimmel, A. Feuer, and A. Bruckstein. Over-parameterized optical flow using a stereoscopic constraint. SSVM 2011:761-772. | |
[45] Adaptive flow | 121 | 2 | gray | Tarik Arici and Vural Aksakalli. Energy minimization based motion estimation using adaptive smoothness priors. VISAPP 2012. | |
[46] TC-Flow | 2500 | 5 | color | S. Volz, A. Bruhn, L. Valgaerts, and H. Zimmer. Modeling temporal coherence for optical flow. ICCV 2011. | |
[47] SLK | 300 | 2 | gray | T. Corpetti and E. Mémin. Stochastic uncertainty models for the luminance consistency assumption. IEEE TIP 2011. | |
[48] CLG-TV | 29 | 2 | gray | M. Drulea. Total variation regularization of local-global optical flow. ITSC 2011. Matlab code. | |
[49] SimpleFlow | 1.7 | 2 | color | M. Tao, J. Bai, P. Kohli, S. Paris. SimpleFlow: a non-iterative, sublinear optical flow algorithm. EUROGRAPHICS 2012. | |
[50] IAOF | 57 | 2 | gray | D. Nguyen. Improving motion estimation using image-driven functions and hybrid scheme. PSIVT 2011. | |
[51] IAOF2 | 56 | 2 | gray | Duc Dung Nguyen and Jae Wook Jeon. Enhancing accuracy and sharpness of motion field with adaptive scheme and occlusion-aware filter. IET Image Processing 7.2 (2013): 144-153. | |
[52] LocallyOriented | 9541 | 2 | gray | Y.Niu, A. Dick, and M. Brooks. Locally oriented optical flow computation. To appear in TIP 2012. | |
[53] IROF-TV | 261 | 2 | color | H. Rashwan, D. Puig, and M. Garcia. On improving the robustness of differential optical flow. ICCV 2011 Artemis workshop. | |
[54] Sparse Occlusion | 2312 | 2 | color | Alper Ayvaci, Michalis Raptis, and Stefano Soatto. Sparse occlusion detection with optical flow. IJCV 97(3):322-338, 2012. | |
[55] PGAM+LK | 0.37 | 2 | gray | A. Alba, E. Arce-Santana, and M. Rivera. Optical flow estimation with prior models obtained from phase correlation. ISVC 2010. | |
[56] Sparse-NonSparse | 713 | 2 | color | Zhuoyuan Chen, Jiang Wang, and Ying Wu. Decomposing and regularizing sparse/non-sparse components for motion field estimation. CVPR 2012. | |
[57] nLayers | 36150 | 4 | color | D. Sun, E. Sudderth, and M. Black. Layered segmentation and optical flow estimation over time. CVPR 2012. | |
[58] IROF++ | 187 | 2 | color | H. Rashwan, D. Puig, and M. Garcia. Variational optical flow estimation based on stick tensor voting. IEEE TIP 2013. | |
[59] COFM | 600 | 3 | color | M. Mozerov. Constrained optical flow estimation as a matching problem. IEEE TIP 2013. | |
[60] Efficient-NL | 400 | 2 | color | P. Krähenbühl and V. Koltun. Efficient nonlocal regularization for optical flow. ECCV 2012. | |
[61] BlockOverlap | 2 | 2 | gray | Michael Santoro, Ghassan AlRegib, and Yucel Altunbasak. Motion estimation using block overlap minimization. MMSP 2012. | |
[62] Ramp | 1200 | 2 | color | A. Singh and N. Ahuja. Exploiting ramp structures for improving optical flow estimation. ICPR 2012. | |
[63] Occlusion-TV-L1 | 538 | 3 | gray | C. Ballester, L. Garrido, V. Lazcano, and V. Caselles. A TV-L1 optical flow method with occlusion detection. DAGM-OAGM 2012. | |
[64] TV-L1-MCT | 90 | 2 | color | M. Mohamed and B. Mertsching. TV-L1 optical flow estimation with image details recovering based on modified census transform. ISVC 2012. | |
[65] Local-TV-L1 | 500 | 2 | gray | L. Raket. Local smoothness for global optical flow. ICIP 2012. | |
[66] ALD-Flow | 61 | 2 | color | M. Stoll, A. Bruhn, and S. Volz. Adaptive integration of feature matches into variational optic flow methods. ACCV 2012. | |
[67] SIOF | 234 | 2 | color | L. Xu, Z. Dai, and J. Jia. Scale invariant optical flow. ECCV 2012. | |
[68] MDP-Flow2 | 342 | 2 | color | L. Xu, J. Jia, and Y. Matsushita. Motion detail preserving optical flow estimation. PAMI 34(9):1744-1757, 2012. Code available. | |
[69] TCOF | 1421 | all | gray | J. Sanchez, A. Salgado, and N. Monzon. Optical flow estimation with consistent spatio-temporal coherence models. VISAPP 2013. | |
[70] LME | 476 | 2 | color | W. Li, D. Cosker, M. Brown, and R. Tang. Optical flow estimation using Laplacian mesh energy. CVPR 2013. | |
[71] NN-field | 362 | 2 | color | L. Chen, H. Jin, Z. Lin, S. Cohen, and Y. Wu. Large displacement optical flow from nearest neighbor fields. CVPR 2013. | |
[72] FESL | 3310 | 2 | color | Weisheng Dong, Guangming Shi, Xiaocheng Hu, and Yi Ma. Nonlocal sparse and low-rank regularization for optical flow estimation. IEEE TIP 23(10):4527-4538, 2014. | |
[73] PMF | 35 | 2 | color | J. Lu, H. Yang, D. Min, and M. Do. PatchMatch filter: efficient edge-aware filtering meets randomized search for fast correspondence field estimation. CVPR 2013. | |
[74] FC-2Layers-FF | 2662 | 4 | color | D. Sun, J. Wulff, E. Sudderth, H. Pfister, and M. Black. A fully-connected layered model of foreground and background flow. CVPR 2013. | |
[75] NNF-Local | 673 | 2 | color | Zhuoyuan Chen, Hailin Jin, Zhe Lin, Scott Cohen, and Ying Wu. Large displacement optical flow from nearest neighbor fields. CVPR 2013. | |
[76] Correlation Flow | 290 | 2 | color | M. Drulea and S. Nedevschi. Motion estimation using the correlation transform. TIP 2013. Matlab code. | |
[77] TC/T-Flow | 341 | 5 | color | M. Stoll, S. Volz, and A. Bruhn. Joint trilateral filtering for multiframe optical flow. ICIP 2013. | |
[78] OFLAF | 1530 | 2 | color | T. Kim, H. Lee, and K. Lee. Optical flow via locally adaptive fusion of complementary data costs. ICCV 2013. | |
[79] Periodicity | 8000 | 4 | color | Georgii Khachaturov, Silvia Gonzalez-Brambila, and Jesus Gonzalez-Trejo. Periodicity-based computation of optical flow. Computacion y Sistemas (CyS) 2014. | |
[80] SILK | 572 | 2 | gray | Pascal Zille, Thomas Corpetti, Liang Shao, and Xu Chen. Observation model based on scale interactions for optical flow estimation. IEEE TIP 23(8):3281-3293, 2014. | |
[81] CRTflow | 13 | 3 | color | O. Demetz, D. Hafner, and J. Weickert. The complete rank transform: a tool for accurate and morphologically invariant matching of structures. BMVC 2013. | |
[82] Classic+CPF | 640 | 2 | gray | Zhigang Tu, Nico van der Aa, Coert Van Gemeren, and Remco Veltkamp. A combined post-filtering method to improve accuracy of variational optical flow estimation. Pattern Recognition 47(5):1926-1940, 2014. | |
[83] S2D-Matching | 1200 | 2 | color | Marius Leordeanu, Andrei Zanfir, and Cristian Sminchisescu. Locally affine sparse-to-dense matching for motion and occlusion estimation. ICCV 2013. | |
[84] AGIF+OF | 438 | 2 | gray | Zhigang Tu, Ronald Poppe, and Remco Veltkamp. Adaptive guided image filter for warping in variational optical flow computation. Signal Processing 127:253-265, 2016. | |
[85] DeepFlow | 13 | 2 | color | P. Weinzaepfel, J. Revaud, Z. Harchaoui, and C. Schmid. DeepFlow: large displacement optical flow with deep matching. ICCV 2013. | |
[86] EPPM w/o HM | 2.5 | 2 | color | L. Bao, Q. Yang, and H. Jin. Fast edge-preserving PatchMatch for large displacement optical flow. CVPR 2014. | |
[87] MLDP_OF | 165 | 2 | gray | M. Mohamed, H. Rashwan, B. Mertsching, M. Garcia, and D. Puig. Illumination-robust optical flow approach using local directional pattern. IEEE TCSVT 24(9):1499-1508, 2014. | |
[88] RFlow | 20 | 2 | gray | S. Ali, C. Daul, and W. Blondel. Robust and accurate optical flow estimation for weak texture and varying illumination condition: Application to cystoscopy. IPTA 2014. | |
[89] SRR-TVOF-NL | 32 | all | color | P. Pohl, M. Sirotenko, E. Tolstaya, and V. Bucha. Edge preserving motion estimation with occlusions correction for assisted 2D to 3D conversion. IS&T/SPIE Electronic Imaging 2014. | |
[90] 2DHMM-SAS | 157 | 2 | color | M.-C. Shih, R. Shenoy, and K. Rose. A two-dimensional hidden Markov model with spatially-adaptive states with application of optical flow. ICIP 2014 submission. | |
[91] WLIF-Flow | 700 | 2 | color | Z. Tu, R. Veltkamp, N. van der Aa, and C. Van Gemeren. Weighted local intensity fusion method for variational optical flow estimation. Submitted to TIP 2014. | |
[92] FMOF | 215 | 2 | color | N. Jith, A. Ramakanth, and V. Babu. Optical flow estimation using approximate nearest neighbor field fusion. ICASSP 2014. | |
[93] TriFlow | 150 | 2 | color | TriFlow. Optical flow with geometric occlusion estimation and fusion of multiple frames. ECCV 2014 submission 914. | |
[94] ComponentFusion | 6.5 | 2 | color | Anonymous. Fast optical flow by component fusion. ECCV 2014 submission 941. | |
[95] AggregFlow | 1642 | 2 | color | D. Fortun, P. Bouthemy, and C. Kervrann. Aggregation of local parametric candidates and exemplar-based occlusion handling for optical flow. Preprint arXiv:1407.5759. | |
[96] 2bit-BM-tele | 124 | 2 | gray | R. Xu and D. Taubman. Robust dense block-based motion estimation using a two-bit transform on a Laplacian pyramid. ICIP 2013. | |
[97] HCIC-L | 330 | 2 | color | Anonymous. Globally-optimal image correspondence using a hierarchical graphical model. NIPS 2014 submission 114. | |
[98] TF+OM | 600 | 2 | color | R. Kennedy and C. Taylor. Optical flow with geometric occlusion estimation and fusion of multiple frames. EMMCVPR 2015. | |
[99] PH-Flow | 800 | 2 | color | J. Yang and H. Li. Dense, accurate optical flow estimation with piecewise parametric model. CVPR 2015. | |
[100] EpicFlow | 16 | 2 | color | J. Revaud, P. Weinzaepfel, Z. Harchaoui, and C. Schmid. EpicFlow: edge-preserving interpolation of correspondences for optical flow. CVPR 2015. | |
[101] NNF-EAC | 380 | 2 | color | Anonymous. Variational method for joint optical flow estimation and edge-aware image restoration. CVPR 2015 submission 2336. | |
[102] Heeger++ | 6600 | 5 | gray | Anonymous. A context aware biologically inspired algorithm for optical flow (updated results). CVPR 2015 submission 2238. | |
[103] HBM-GC | 330 | 2 | color | A. Zheng and Y. Yuan. Motion estimation via hierarchical block matching and graph cut. Submitted to ICIP 2015. | |
[104] FFV1MT | 358 | 5 | gray | F. Solari, M. Chessa, N. Medathati, and P. Kornprobst. What can we expect from a V1-MT feedforward architecture for optical flow estimation? Submitted to Signal Processing: Image Communication 2015. | |
[105] ROF-ND | 4 | 2 | color | S. Ali, C. Daul, E. Galbrun, and W. Blondel. Illumination invariant large displacement optical flow using robust neighbourhood descriptors. Submitted to CVIU 2015. | |
[106] DeepFlow2 | 16 | 2 | color | J. Revaud, P. Weinzaepfel, Z. Harchaoui, and C. Schmid. Deep convolutional matching. Submitted to IJCV, 2015. | |
[107] HAST | 2667 | 2 | color | Anonymous. Highly accurate optical flow estimation on superpixel tree. ICCV 2015 submission 2221. | |
[108] FlowFields | 15 | 2 | color | C. Bailer, B. Taetz, and D. Stricker. Flow Fields: Dense unregularized correspondence fields for highly accurate large displacement optical flow estimation. ICCV 2015. | |
[109] SVFilterOh | 1.56 | 2 | color | Anonymous. Fast estimation of large displacement optical flow using PatchMatch and dominant motion patterns. CVPR 2016 submission 1788. | |
[110] FlowNetS+ft+v | 0.5 | 2 | color | Anonymous. Learning optical flow with convolutional neural networks. ICCV 2015 submission 235. | |
[111] CombBMOF | 51 | 2 | color | M. Brüggemann, R. Kays, P. Springer, and O. Erdler. Combined block-matching and adaptive differential motion estimation in a hierarchical multi-scale framework. ICGIP 2014. (Method improved since publication.) | |
[112] PMMST | 182 | 2 | color | F. Zhang, S. Xu, and X. Zhang. High accuracy correspondence field estimation via MST based patch matching. Submitted to TIP 2015. | |
[113] DF-Auto | 70 | 2 | color | N. Monzon, A. Salgado, and J. Sanchez. Regularization strategies for discontinuity-preserving optical flow methods. Submitted to TIP 2015. | |
[114] CPM-Flow | 3 | 2 | color | Anonymous. Efficient coarse-to-fine PatchMatch for large displacement optical flow. CVPR 2016 submission 241. | |
[115] CNN-flow-warp+ref | 1.4 | 3 | color | D. Teney and M. Hebert. Learning to extract motion from videos in convolutional neural networks. ArXiv 1601.07532, 2016. | |
[116] Steered-L1 | 804 | 2 | color | Anonymous. Optical flow estimation via steered-L1 norm. Submitted to WSCG 2016. | |
[117] StereoOF-V1MT | 343 | 2 | gray | Anonymous. Visual features for action-oriented tasks: a cortical-like model for disparity and optic flow computation. BMVC 2016 submission 132. | |
[118] PGM-C | 5 | 2 | color | Y. Li. Pyramidal gradient matching for optical flow estimation. Submitted to PAMI 2016. | |
[119] RNLOD-Flow | 1040 | 2 | gray | C. Zhang, Z. Chen, M. Wang, M. Li, and S. Jiang. Robust non-local TV-L1 optical flow estimation with occlusion detection. IEEE TIP 26(8):4055-4067, 2017. | |
[120] FlowNet2 | 0.091 | 2 | color | Anonymous. FlowNet 2.0: Evolution of optical flow estimation with deep networks. CVPR 2017 submission 900. | |
[121] S2F-IF | 20 | 2 | color | Anonymous. S2F-IF: Slow-to-fast interpolator flow. CVPR 2017 submission 765. | |
[122] BriefMatch | 0.068 | 2 | gray | G. Eilertsen, P.-E. Forssen, and J. Unger. Dense binary feature matching for real-time optical flow estimation. SCIA 2017 submission 62. | |
[123] OAR-Flow | 60 | 2 | color | Anonymous. Order-adaptive regularisation for variational optical flow: global, local and in between. SSVM 2017 submission 20. | |
[124] AdaConv-v1 | 2.8 | 2 | color | Simon Niklaus, Long Mai, and Feng Liu. (Interpolation results only.) Video frame interpolation via adaptive convolution. CVPR 2017. | |
[125] SepConv-v1 | 0.2 | 2 | color | Simon Niklaus, Long Mai, and Feng Liu. (Interpolation results only.) Video frame interpolation via adaptive separable convolution. ICCV 2017. | |
[126] ProbFlowFields | 37 | 2 | color | A. Wannenwetsch, M. Keuper, and S. Roth. ProbFlow: joint optical flow and uncertainty estimation. ICCV 2017. | |
[127] UnFlow | 0.12 | 2 | color | Anonymous. UnFlow: Unsupervised learning of optical flow with a bidirectional census loss. Submitted to AAAI 2018. | |
[128] FlowFields+ | 10.5 | 2 | color | C. Bailer, B. Taetz, and D. Stricker. Flow fields: Dense correspondence fields for highly accurate large displacement optical flow estimation. Submitted to PAMI 2017. | |
[129] IIOF-NLDP | 150 | 2 | color | D.-H. Trinh, W. Blondel, and C. Daul. A general form of illumination-invariant descriptors in variational optical flow estimation. ICIP 2017. | |
[130] SuperSlomo | 0.5 | 2 | color | Anonymous. (Interpolation results only.) Super SloMo: High quality estimation of multiple intermediate frames for video interpolation. CVPR 2018 submission 325. | |
[131] EPMNet | 0.061 | 2 | color | Anonymous. EPM-convolution multilayer-network for optical flow estimation. ICME 2018 submission 1119. | |
[132] OFRF | 90 | 2 | color | Tan Khoa Mai, Michele Gouiffes, and Samia Bouchafa. Optical flow refinement using iterative propagation under colour, proximity and flow reliability constraints. IET Image Processing 2020. | |
[133] 3DFlow | 328 | 2 | color | J. Chen, Z. Cai, J. Lai, and X. Xie. A filtering based framework for optical flow estimation. IEEE TCSVT 2018. | |
[134] CtxSyn | 0.07 | 2 | color | Simon Niklaus and Feng Liu. (Interpolation results only.) Context-aware synthesis for video frame interpolation. CVPR 2018. | |
[135] DMF_ROB | 10 | 2 | color | ROB 2018 baseline submission, based on: P. Weinzaepfel, J. Revaud, Z. Harchaoui, and C. Schmid. DeepFlow: large displacement optical flow with deep matching. ICCV 2013. | |
[136] JOF | 657 | 2 | gray | C. Zhang, L. Ge, Z. Chen, M. Li, W. Liu, and H. Chen. Refined TV-L1 optical flow estimation using joint filtering. Submitted to IEEE TMM, 2018. | |
[137] AVG_FLOW_ROB | N/A | 2 | N/A | Average flow field of ROB 2018 training set. | |
[138] LiteFlowNet | 0.06 | 2 | color | T.-W. Hui, X. Tang, and C. C. Loy. LiteFlowNet: A lightweight convolutional neural network for optical flow estimation. CVPR 2018. | |
[139] AugFNG_ROB | 0.10 | all | color | Anonymous. FusionNet and AugmentedFlowNet: Selective proxy ground truth for training on unlabeled images. ECCV 2018 submission 2834. | |
[140] ResPWCR_ROB | 0.2 | 2 | color | Anonymous. Learning optical flow with residual connections. ROB 2018 submission. | |
[141] FF++_ROB | 17.43 | 2 | color | R. Schuster, C. Bailer, O. Wasenmueller, D. Stricker. FlowFields++: Accurate optical flow correspondences meet robust interpolation. ICIP 2018. Submitted to ROB 2018. | |
[142] ProFlow_ROB | 76 | 3 | color | Anonymous. ProFlow: Learning to predict optical flow. BMVC 2018 submission 277. | |
[143] PWC-Net_RVC | 0.069 | 2 | color | D. Sun, X. Yang, M.-Y. Liu, and J. Kautz. PWC-Net: CNNs for optical flow using pyramid, warping, and cost volume. CVPR 2018. Also RVC 2020 baseline submission. | |
[144] WOLF_ROB | 0.02 | 2 | color | Anonymous. Reversed deep neural network for optical flow. ROB 2018 submission. | |
[145] LFNet_ROB | 0.068 | 2 | color | Anonymous. Learning a flow network. ROB 2018 submission. | |
[146] WRT | 9 | 2 | color | L. Mei, J. Lai, X. Xie, J. Zhu, and J. Chen. Illumination-invariance optical flow estimation using weighted regularization transform. Submitted to IEEE TCSVT 2018. | |
[147] EAI-Flow | 2.1 | 2 | color | Anonymous. Hierarchical coherency sensitive hashing and interpolation with RANSAC for large displacement optical flow. CVIU 2018 submission 17-678. | |
[148] ContinualFlow_ROB | 0.5 | all | color | Michal Neoral, Jan Sochman, and Jiri Matas. Continual occlusions and optical flow estimation. ACCV 2018. | |
[149] CyclicGen | 0.088 | 2 | color | Anonymous. (Interpolation results only.) Deep video frame interpolation using cyclic frame generation. AAAI 2019 submission 323. | |
[150] TOF-M | 0.393 | 2 | color | Tianfan Xue, Baian Chen, Jiajun Wu, Donglai Wei, and William Freeman. Video enhancement with task-oriented flow. arXiv 1711.09078, 2017. | |
[151] MPRN | 0.32 | 4 | color | Anonymous. (Interpolation results only.) Multi-frame pyramid refinement network for video frame interpolation. CVPR 2019 submission 1361. | |
[152] DAIN | 0.13 | 2 | color | Wenbo Bao, Wei-Sheng Lai, Chao Ma, Xiaoyun Zhang, Zhiyong Gao, and Ming-Hsuan Yang. (Interpolation results only.) DAIN: Depth-aware video frame interpolation. CVPR 2019. | |
[153] FRUCnet | 0.65 | 2 | color | Van Thang Nguyen, Kyujoong Lee, and Hyuk-Jae Lee. (Interpolation results only.) A stacked deep MEMC network for frame rate up conversion and its application to HEVC. Submitted to IEEE TCSVT 2019. | |
[154] OFRI | 0.31 | 2 | color | Anonymous. (Interpolation results only.) Efficient video frame interpolation via optical flow refinement. CVPR 2019 submission 6743. | |
[155] CompactFlow_ROB | 0.05 | 2 | color | Anonymous. CompactFlow: spatially shiftable window revisited. CVPR 2019 submission 1387. | |
[156] SegFlow | 3.2 | 2 | color | Jun Chen, Zemin Cai, Jianhuang Lai, and Xiaohua Xie. Efficient segmentation-based PatchMatch for large displacement optical flow estimation. IEEE TCSVT 2018. | |
[157] HCFN | 0.18 | 2 | color | Anonymous. Practical coarse-to-fine optical flow with deep networks. ICCV 2019 submission 116. | |
[158] FGME | 0.23 | 2 | color | Bo Yan, Weimin Tan, Chuming Lin, and Liquan Shen. (Interpolation results only.) Fine-grained motion estimation for video frame interpolation. IEEE Transactions on Broadcasting, 2020. | |
[159] MS-PFT | 0.44 | 2 | color | Xianhang Cheng and Zhenzhong Chen. (Interpolation results only.) A multi-scale position feature transform network for video frame interpolation. IEEE TCSVT 2020. | |
[160] MEMC-Net+ | 0.12 | 2 | color | Wenbo Bao, Wei-Sheng Lai, Xiaoyun Zhang, Zhiyong Gao, and Ming-Hsuan Yang. (Interpolation results only.) MEMC-Net: Motion estimation and motion compensation driven neural network for video interpolation and enhancement. Submitted to PAMI 2018. | |
[161] ADC | 0.01 | 2 | color | Anonymous. (Interpolation results only.) Learning spatial transform for video frame interpolation. ICCV 2019 submission 5424. | |
[162] DSepConv | 0.3 | 2 | color | Xianhang Cheng and Zhenzhong Chen. (Interpolation results only.) Video frame interpolation via deformable separable convolution. AAAI 2020. | |
[163] MAF-net | 0.3 | 2 | color | Mengshun Hu, Jing Xiao, Liang Liao, Zheng Wang, Chia-Wen Lin, Mi Wang, and Shinichi Satoh. Capturing small, fast-moving objects: Frame interpolation via recurrent motion enhancement. IEEE TCSVT 2021. | |
[164] STAR-Net | 0.049 | 2 | color | Anonymous. (Interpolation results only.) Space-time-aware multiple resolution for video enhancement. CPVR 2020 submission 430. | |
[165] AdaCoF | 0.03 | 2 | color | Hyeongmin Lee, Taeoh Kim, Tae-young Chung, Daehyun Pak, Yuseok Ban, and Sangyoun Lee. (Interpolation results only.) AdaCoF: Adaptive collaboration of flows for video frame interpolation. CVPR 2020. Code available. | |
[166] TC-GAN | 0.13 | 2 | color | Anonymous. (Interpolation results only.) A temporal and contextual generative adversarial network for video frame interpolation. CVPR 2020 submission 111. | |
[167] FeFlow | 0.52 | 2 | color | Shurui Gui, Chaoyue Wang, Qihua Chen, and Dacheng Tao. (Interpolation results only.) |
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[168] DAI | 0.23 | 2 | color | Anonymous. (Interpolation results only.) Deep animation inbetweening. CVPR 2020 submission 6404. | |
[169] SoftSplat | 0.1 | 2 | color | Simon Niklaus and Feng Liu. (Interpolation results only.) Softmax splatting for video frame interpolation. CVPR 2020. | |
[170] STSR | 5.35 | 2 | color | Anonymous. (Interpolation results only.) Spatial and temporal video super-resolution with a frequency domain loss. ECCV 2020 submission 2340. | |
[171] BMBC | 0.77 | 2 | color | Anonymous. (Interpolation results only.) BMBC: Bilateral motion estimation with bilateral cost volume for video interpolation. ECCV 2020 submission 2095. | |
[172] GDCN | 1.0 | 2 | color | Anonymous. (Interpolation results only.) Video interpolation via generalized deformable convolution. ECCV 2020 submission 4347. | |
[173] EDSC | 0.56 | 2 | color | Xianhang Cheng and Zhenzhong Chen. (Interpolation results only.) Multiple video frame interpolation via enhanced deformable separable convolution. Submitted to PAMI 2020. | |
[174] CoT-AMFlow | 0.04 | 2 | color | Anonymous. CoT-AMFlow: Adaptive modulation network with co-teaching strategy for unsupervised optical flow estimation. CoRL 2020 submission 36. | |
[175] TVL1_RVC | 11.6 | 2 | color | RVC 2020 baseline submission by Toby Weed, based on: Javier Sanchez, Enric Meinhardt-Llopis, and Gabriele Facciolo. TV-L1 optical flow estimation. IPOL 3:137-150, 2013. | |
[176] H+S_RVC | 44.7 | 2 | color | RVC 2020 baseline submission by Toby Weed, based on: Enric Meinhardt-Llopis, Javier Sanchez, and Daniel Kondermann. Horn-Schunck optical flow with a multi-scale strategy. IPOL 3:151–172, 2013. | |
[177] PRAFlow_RVC | 0.34 | 2 | color | Zhexiong Wan, Yuxin Mao, and Yuchao Dai. Pyramid recurrent all-pairs flow. RVC 2020 submission. | |
[178] VCN_RVC | 0.84 | 2 | color | Gengshan Yang and Deva Ramanan. Volumetric correspondence networks for optical flow. NeurIPS 2019. RVC 2020 submission. | |
[179] RAFT-TF_RVC | 1.51 | 2 | color | Deqing Sun, Charles Herrmann, Varun Jampani, Mike Krainin, Forrester Cole, Austin Stone, Rico Jonschkowski, Ramin Zabih, William Freeman, and Ce Liu. A TensorFlow implementation of RAFT (Zachary Teed and Jia Deng. RAFT: Recurrent all-pairs field transforms for optical flow. ECCV 2020.) RVC 2020 submission. | |
[180] IRR-PWC_RVC | 0.18 | 2 | color | Junhwa Hur and Stefan Roth. Iterative residual refinement for joint optical flow and occlusion estimation. CVPR 2019. RVC 2020 submission. | |
[181] C-RAFT_RVC | 0.60 | 2 | color | Henrique Morimitsu and Xiangyang Ji. Classification RAFT. RVC 2020 submission. | |
[182] LSM_FLOW_RVC | 0.2 | 2 | color | Chengzhou Tang, Lu Yuan, and Ping Tan. LSM: Learning subspace minimization for low-level vision. CVPR 2020. RVC 2020 submission. | |
[183] MV_VFI | 0.23 | 2 | color | Zhenfang Wang, Yanjiang Wang, and Baodi Liu. (Interpolation results only.) Multi-view based video interpolation algorithm. ICASSP 2021 submission. | |
[184] DistillNet | 0.12 | 2 | color | Anonymous. (Interpolation results only.) A teacher-student optical-flow distillation framework for video frame interpolation. CVPR 2021 submission 7534. | |
[185] SepConv++ | 0.1 | 2 | color | Simon Niklaus, Long Mai, and Oliver Wang. (Interpolation results only.) Revisiting adaptive convolutions for video frame interpolation. WACV 2021. | |
[186] EAFI | 0.18 | 2 | color | Anonymous. (Interpolation results only.) Error-aware spatial ensembles for video frame interpolation. ICCV 2021 submission 8020. | |
[187] UnDAF | 0.04 | 2 | color | Anonymous. UnDAF: A general unsupervised domain adaptation framework for disparity, optical flow or scene flow estimation. CVPR 2021 submission 236. | |
[188] FLAVR | 0.029 | all | color | Anonymous. (Interpolation results only.) FLAVR frame interpolation. NeurIPS 2021 submission 1300. | |
[189] PBOFVI | 150 | 2 | color | Zemin Cai, Jianhuang Lai, Xiaoxin Liao, and Xucong Chen. Physics-based optical flow under varying illumination. Submitted to IEEE TCSVT 2021. | |
[190] SoftsplatAug | 0.17 | 2 | color | Anonymous. (Interpolation results only.) Transformation data augmentation for sports video frame interpolation. ICCV 2021 submission 3245. |