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Papers/Out-of-Domain Human Mesh Reconstruction via Dynamic Bileve...

Out-of-Domain Human Mesh Reconstruction via Dynamic Bilevel Online Adaptation

Shanyan Guan, Jingwei Xu, Michelle Z. He, Yunbo Wang, Bingbing Ni, Xiaokang Yang

2021-11-073D Human Pose Estimation3D Absolute Human Pose Estimation
PaperPDFCode(official)

Abstract

We consider a new problem of adapting a human mesh reconstruction model to out-of-domain streaming videos, where performance of existing SMPL-based models are significantly affected by the distribution shift represented by different camera parameters, bone lengths, backgrounds, and occlusions. We tackle this problem through online adaptation, gradually correcting the model bias during testing. There are two main challenges: First, the lack of 3D annotations increases the training difficulty and results in 3D ambiguities. Second, non-stationary data distribution makes it difficult to strike a balance between fitting regular frames and hard samples with severe occlusions or dramatic changes. To this end, we propose the Dynamic Bilevel Online Adaptation algorithm (DynaBOA). It first introduces the temporal constraints to compensate for the unavailable 3D annotations, and leverages a bilevel optimization procedure to address the conflicts between multi-objectives. DynaBOA provides additional 3D guidance by co-training with similar source examples retrieved efficiently despite the distribution shift. Furthermore, it can adaptively adjust the number of optimization steps on individual frames to fully fit hard samples and avoid overfitting regular frames. DynaBOA achieves state-of-the-art results on three out-of-domain human mesh reconstruction benchmarks.

Results

TaskDatasetMetricValueModel
3D Human Pose EstimationSurrealPA-MPJPE34DynaBOA
3D Human Pose EstimationSurrealPVE70.7DynaBOA
3D Human Pose EstimationMPI-INF-3DHPAUC43.1DynaBOA
3D Human Pose EstimationMPI-INF-3DHPMPJPE101.5DynaBOA
3D Human Pose EstimationMPI-INF-3DHPPA-MPJPE66.1DynaBOA
3D Human Pose EstimationMPI-INF-3DHPPCK79.5DynaBOA
3D Human Pose Estimation3DPWMPJPE65.5DynaBOA (w/ 2D GT)
3D Human Pose Estimation3DPWMPVPE82DynaBOA (w/ 2D GT)
3D Human Pose Estimation3DPWPA-MPJPE40.4DynaBOA (w/ 2D GT)
3D Human Pose EstimationSurrealMPJPE55.2DynaBOA
Pose EstimationSurrealPA-MPJPE34DynaBOA
Pose EstimationSurrealPVE70.7DynaBOA
Pose EstimationMPI-INF-3DHPAUC43.1DynaBOA
Pose EstimationMPI-INF-3DHPMPJPE101.5DynaBOA
Pose EstimationMPI-INF-3DHPPA-MPJPE66.1DynaBOA
Pose EstimationMPI-INF-3DHPPCK79.5DynaBOA
Pose Estimation3DPWMPJPE65.5DynaBOA (w/ 2D GT)
Pose Estimation3DPWMPVPE82DynaBOA (w/ 2D GT)
Pose Estimation3DPWPA-MPJPE40.4DynaBOA (w/ 2D GT)
Pose EstimationSurrealMPJPE55.2DynaBOA
3DSurrealPA-MPJPE34DynaBOA
3DSurrealPVE70.7DynaBOA
3DMPI-INF-3DHPAUC43.1DynaBOA
3DMPI-INF-3DHPMPJPE101.5DynaBOA
3DMPI-INF-3DHPPA-MPJPE66.1DynaBOA
3DMPI-INF-3DHPPCK79.5DynaBOA
3D3DPWMPJPE65.5DynaBOA (w/ 2D GT)
3D3DPWMPVPE82DynaBOA (w/ 2D GT)
3D3DPWPA-MPJPE40.4DynaBOA (w/ 2D GT)
3DSurrealMPJPE55.2DynaBOA
3D Absolute Human Pose EstimationSurrealMPJPE55.2DynaBOA
1 Image, 2*2 StitchiSurrealPA-MPJPE34DynaBOA
1 Image, 2*2 StitchiSurrealPVE70.7DynaBOA
1 Image, 2*2 StitchiMPI-INF-3DHPAUC43.1DynaBOA
1 Image, 2*2 StitchiMPI-INF-3DHPMPJPE101.5DynaBOA
1 Image, 2*2 StitchiMPI-INF-3DHPPA-MPJPE66.1DynaBOA
1 Image, 2*2 StitchiMPI-INF-3DHPPCK79.5DynaBOA
1 Image, 2*2 Stitchi3DPWMPJPE65.5DynaBOA (w/ 2D GT)
1 Image, 2*2 Stitchi3DPWMPVPE82DynaBOA (w/ 2D GT)
1 Image, 2*2 Stitchi3DPWPA-MPJPE40.4DynaBOA (w/ 2D GT)
1 Image, 2*2 StitchiSurrealMPJPE55.2DynaBOA

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