LTVRE_ROB | | 86.82 1 | 74.53 1 | 78.23 1 | 72.06 1 | 62.97 1 | 76.95 2 | 80.00 2 | 59.24 4 | 93.50 2 |
Andreas Kuhn, Heiko Hirschmüller, Daniel Scharstein, Helmut Mayer: A TV Prior for High-Quality Scalable Multi-View Stereo Reconstruction. International Journal of Computer Vision 2016 |
3Dnovator+ | | 83.71 3 | 72.24 2 | 75.03 2 | 70.38 3 | 57.83 3 | 78.07 1 | 71.19 6 | 61.87 3 | 92.23 4 |
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3Dnovator | | 79.41 10 | 72.11 3 | 74.21 3 | 70.71 2 | 54.58 5 | 76.83 3 | 71.81 4 | 63.51 2 | 93.85 1 |
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COLMAP_ROB |  | 85.66 2 | 69.58 4 | 73.71 4 | 66.82 4 | 58.83 2 | 75.96 4 | 60.77 13 | 63.74 1 | 88.59 6 |
Johannes L. Schönberger, Enliang Zheng, Marc Pollefeys, Jan-Michael Frahm: Pixelwise View Selection for Unstructured Multi-View Stereo. ECCV 2016 |
OpenMVS |  | 75.38 16 | 67.44 5 | 71.75 5 | 64.57 7 | 51.05 8 | 71.84 7 | 63.63 11 | 58.26 6 | 92.45 3 |
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DeepC-MVS_fast | | 81.78 5 | 67.22 6 | 71.51 6 | 64.36 8 | 55.68 4 | 72.92 5 | 66.58 8 | 53.58 8 | 87.35 7 |
Andreas Kuhn, Christian Sormann, Mattia Rossi, Oliver Erdler, Friedrich Fraundorfer: DeepC-MVS: Deep Confidence Prediction for Multi-View Stereo Reconstruction. 3DV 2020 |
DeepC-MVS | | 83.59 4 | 65.98 7 | 69.37 8 | 63.72 9 | 52.36 7 | 70.11 9 | 63.91 10 | 57.15 7 | 86.38 9 |
Andreas Kuhn, Christian Sormann, Mattia Rossi, Oliver Erdler, Friedrich Fraundorfer: DeepC-MVS: Deep Confidence Prediction for Multi-View Stereo Reconstruction. 3DV 2020 |
DeepPCF-MVS | | 81.61 6 | 65.12 8 | 70.29 7 | 61.68 11 | 53.86 6 | 70.31 8 | 64.65 9 | 50.07 11 | 86.72 8 |
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CasMVSNet(SR_A) | | | 62.79 9 | 58.12 20 | 65.91 5 | 34.02 22 | 59.92 14 | 87.07 1 | 50.74 9 | 82.22 15 |
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CasMVSNet(base) | | | 62.06 10 | 57.36 24 | 65.19 6 | 37.99 21 | 63.36 12 | 73.58 3 | 58.62 5 | 76.74 25 |
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IB-MVS | | 71.28 17 | 61.06 11 | 65.02 10 | 58.42 12 | 39.73 17 | 60.44 13 | 67.25 7 | 47.55 12 | 90.30 5 |
Christian Sormann, Mattia Rossi, Andreas Kuhn and Friedrich Fraundorfer: IB-MVS: An Iterative Algorithm for Deep Multi-View Stereo based on Binary Decisions. BMVC 2021 |
CasMVSNet(SR_B) | | | 60.35 12 | 58.12 20 | 61.84 10 | 34.02 22 | 63.53 11 | 71.26 5 | 50.74 9 | 82.22 15 |
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TAPA-MVS | | 78.00 13 | 57.53 13 | 59.15 17 | 56.45 13 | 33.25 25 | 72.19 6 | 55.89 18 | 41.27 20 | 85.06 11 |
Andrea Romanoni, Matteo Matteucci: TAPA-MVS: Textureless-Aware PAtchMatch Multi-View Stereo. ICCV 2019 |
TAPA-MVS(SR) | | | 57.42 14 | 61.79 13 | 54.51 14 | 38.52 19 | 57.98 16 | 58.15 16 | 47.40 13 | 85.06 11 |
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PCF-MVS | | 76.59 14 | 57.03 15 | 62.55 12 | 53.34 16 | 46.44 11 | 56.38 19 | 62.25 12 | 41.39 18 | 78.67 17 |
Andreas Kuhn, Shan Lin, Oliver Erdler: Plane Completion and Filtering for Multi-View Stereo Reconstruction. GCPR 2019 |
COLMAP(base) | | | 54.85 16 | 60.50 15 | 51.08 17 | 45.13 12 | 57.58 18 | 53.68 19 | 41.99 15 | 75.86 26 |
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ACMM | | 80.67 7 | 54.69 17 | 55.75 25 | 53.98 15 | 33.39 24 | 64.20 10 | 51.32 21 | 46.41 14 | 78.11 21 |
Qingshan Xu and Wenbing Tao: Multi-Scale Geometric Consistency Guided Multi-View Stereo. CVPR 2019 |
LPCS | | | 54.43 18 | 63.80 11 | 48.19 19 | 49.50 9 | 57.64 17 | 46.89 24 | 40.04 22 | 78.09 22 |
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ACMP | | 80.00 8 | 53.70 19 | 59.82 16 | 49.62 18 | 41.23 14 | 58.13 15 | 48.91 23 | 41.82 16 | 78.40 19 |
Qingshan Xu and Wenbing Tao: Planar Prior Assisted PatchMatch Multi-View Stereo. AAAI 2020 |
GSE | | | 52.96 20 | 65.52 9 | 44.58 27 | 47.61 10 | 51.37 23 | 45.62 27 | 36.75 26 | 83.44 14 |
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PLC |  | 76.06 15 | 51.83 21 | 58.21 19 | 47.57 20 | 41.31 13 | 53.45 21 | 48.97 22 | 40.30 21 | 75.12 28 |
Jie Liao, Yanping Fu, Qingan Yan, Chunxia xiao: Pyramid Multi-View Stereo with Local Consistency. Pacific Graphics 2019 |
COLMAP(SR) | | | 51.67 22 | 59.12 18 | 46.71 22 | 40.55 15 | 51.72 22 | 52.60 20 | 35.80 27 | 77.70 23 |
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PMVS |  | 79.51 9 | 51.62 23 | 61.72 14 | 44.90 26 | 39.36 18 | 36.39 28 | 59.11 14 | 39.19 23 | 84.08 13 |
Y. Furukawa, J. Ponce: Accurate, dense, and robust multiview stereopsis. PAMI (2010) |
ACMH+ | | 79.05 11 | 51.57 24 | 58.12 20 | 47.21 21 | 40.39 16 | 54.48 20 | 45.83 26 | 41.33 19 | 75.84 27 |
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ACMH | | 78.40 12 | 50.98 25 | 58.12 20 | 46.22 24 | 38.05 20 | 50.36 24 | 46.62 25 | 41.67 17 | 78.18 20 |
Qingshan Xu and Wenbing Tao: Multi-Scale Geometric Consistency Guided Multi-View Stereo. CVPR 2019 |
BP-MVSNet | | | 49.12 26 | 54.86 26 | 45.30 25 | 32.80 26 | 40.86 26 | 57.05 17 | 37.99 24 | 76.92 24 |
Christian Sormann, Patrick Knöbelreiter, Andreas Kuhn, Mattia Rossi, Thomas Pock, Friedrich Fraundorfer: BP-MVSNet: Belief-Propagation-Layers for Multi-View-Stereo. 3DV 2020 |
CIDER | | | 48.39 27 | 51.15 28 | 46.56 23 | 23.77 27 | 44.18 25 | 58.74 15 | 36.76 25 | 78.52 18 |
Qingshan Xu and Wenbing Tao: Learning Inverse Depth Regression for Multi-View Stereo with Correlation Cost Volume. AAAI 2020 |
A-TVSNet + Gipuma |  | | 45.32 28 | 54.45 27 | 39.23 28 | 23.11 28 | 38.96 27 | 45.44 28 | 33.28 28 | 85.79 10 |
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unsupervisedMVS_cas | | | 27.71 29 | 27.25 33 | 28.02 29 | 17.77 29 | 22.21 29 | 32.37 29 | 29.49 29 | 36.73 33 |
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hgnet | | | 20.23 30 | 34.94 30 | 10.42 31 | 4.69 31 | 8.06 31 | 20.25 31 | 2.95 32 | 65.18 30 |
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DPSNet | | | 20.23 30 | 34.94 30 | 10.42 31 | 4.69 31 | 8.06 31 | 20.25 31 | 2.95 32 | 65.18 30 |
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example | | | 20.20 32 | 33.62 32 | 11.26 30 | 5.50 30 | 5.26 33 | 22.01 30 | 6.49 31 | 61.74 32 |
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CMPMVS |  | 55.74 18 | 14.63 33 | 35.74 29 | 0.55 34 | 0.00 34 | 0.00 34 | 1.66 34 | 0.00 34 | 71.48 29 |
M. Jancosek, T. Pajdla: Multi-View Reconstruction Preserving Weakly-Supported Surfaces. CVPR 2011 |
MVE |  | 41.12 19 | 13.33 34 | 18.95 34 | 9.58 33 | 3.37 33 | 11.70 30 | 6.32 33 | 10.73 30 | 34.53 34 |
Simon Fuhrmann, Fabian Langguth, Michael Goesele: MVE - A Multi-View Reconstruction Environment. EUROGRAPHICS Workshops on Graphics and Cultural Heritage (2014) |
dnet | | | 0.00 35 | 0.00 35 | 0.00 35 | 0.00 34 | 0.00 34 | 0.00 35 | 0.00 34 | 0.00 35 |
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