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Papers/GLAMR: Global Occlusion-Aware Human Mesh Recovery with Dyn...

GLAMR: Global Occlusion-Aware Human Mesh Recovery with Dynamic Cameras

Ye Yuan, Umar Iqbal, Pavlo Molchanov, Kris Kitani, Jan Kautz

2021-12-02CVPR 2022 13D Human Pose EstimationGlobal 3D Human Pose EstimationHuman Mesh Recovery
PaperPDFCode(official)

Abstract

We present an approach for 3D global human mesh recovery from monocular videos recorded with dynamic cameras. Our approach is robust to severe and long-term occlusions and tracks human bodies even when they go outside the camera's field of view. To achieve this, we first propose a deep generative motion infiller, which autoregressively infills the body motions of occluded humans based on visible motions. Additionally, in contrast to prior work, our approach reconstructs human meshes in consistent global coordinates even with dynamic cameras. Since the joint reconstruction of human motions and camera poses is underconstrained, we propose a global trajectory predictor that generates global human trajectories based on local body movements. Using the predicted trajectories as anchors, we present a global optimization framework that refines the predicted trajectories and optimizes the camera poses to match the video evidence such as 2D keypoints. Experiments on challenging indoor and in-the-wild datasets with dynamic cameras demonstrate that the proposed approach outperforms prior methods significantly in terms of motion infilling and global mesh recovery.

Results

TaskDatasetMetricValueModel
3D Human Pose EstimationEMDBAverage MPJAE (deg)25.5058GLAMR
3D Human Pose EstimationEMDBAverage MPJAE-PA (deg)23.5484GLAMR
3D Human Pose EstimationEMDBAverage MPJPE (mm)107.797GLAMR
3D Human Pose EstimationEMDBAverage MPJPE-PA (mm)71.0091GLAMR
3D Human Pose EstimationEMDBAverage MVE (mm)128.237GLAMR
3D Human Pose EstimationEMDBAverage MVE-PA (mm)85.4586GLAMR
3D Human Pose EstimationEMDBJitter (10m/s^3)67.3522GLAMR
3D Human Pose EstimationEMDBAverage G-MPJPE (mm)3193GLAMR
3D Human Pose EstimationEMDBAverage G-MVE (mm)3203GLAMR
Pose EstimationEMDBAverage MPJAE (deg)25.5058GLAMR
Pose EstimationEMDBAverage MPJAE-PA (deg)23.5484GLAMR
Pose EstimationEMDBAverage MPJPE (mm)107.797GLAMR
Pose EstimationEMDBAverage MPJPE-PA (mm)71.0091GLAMR
Pose EstimationEMDBAverage MVE (mm)128.237GLAMR
Pose EstimationEMDBAverage MVE-PA (mm)85.4586GLAMR
Pose EstimationEMDBJitter (10m/s^3)67.3522GLAMR
Pose EstimationEMDBAverage G-MPJPE (mm)3193GLAMR
Pose EstimationEMDBAverage G-MVE (mm)3203GLAMR
3DEMDBAverage MPJAE (deg)25.5058GLAMR
3DEMDBAverage MPJAE-PA (deg)23.5484GLAMR
3DEMDBAverage MPJPE (mm)107.797GLAMR
3DEMDBAverage MPJPE-PA (mm)71.0091GLAMR
3DEMDBAverage MVE (mm)128.237GLAMR
3DEMDBAverage MVE-PA (mm)85.4586GLAMR
3DEMDBJitter (10m/s^3)67.3522GLAMR
3DEMDBAverage G-MPJPE (mm)3193GLAMR
3DEMDBAverage G-MVE (mm)3203GLAMR
1 Image, 2*2 StitchiEMDBAverage MPJAE (deg)25.5058GLAMR
1 Image, 2*2 StitchiEMDBAverage MPJAE-PA (deg)23.5484GLAMR
1 Image, 2*2 StitchiEMDBAverage MPJPE (mm)107.797GLAMR
1 Image, 2*2 StitchiEMDBAverage MPJPE-PA (mm)71.0091GLAMR
1 Image, 2*2 StitchiEMDBAverage MVE (mm)128.237GLAMR
1 Image, 2*2 StitchiEMDBAverage MVE-PA (mm)85.4586GLAMR
1 Image, 2*2 StitchiEMDBJitter (10m/s^3)67.3522GLAMR
1 Image, 2*2 StitchiEMDBAverage G-MPJPE (mm)3193GLAMR
1 Image, 2*2 StitchiEMDBAverage G-MVE (mm)3203GLAMR

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