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Sparse Inertial Poser: Automatic 3D Human Pose Estimation from Sparse IMUs

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arxiv 1703.08014 v2 pith:7HLKLHLF submitted 2017-03-23 cs.CV cs.GR

classification cs.CVcs.GR
keywords humansensorsinertialproblemsparseattachedbodydataset
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We address the problem of making human motion capture in the wild more practical by using a small set of inertial sensors attached to the body. Since the problem is heavily under-constrained, previous methods either use a large number of sensors, which is intrusive, or they require additional video input. We take a different approach and constrain the problem by: (i) making use of a realistic statistical body model that includes anthropometric constraints and (ii) using a joint optimization framework to fit the model to orientation and acceleration measurements over multiple frames. The resulting tracker Sparse Inertial Poser (SIP) enables 3D human pose estimation using only 6 sensors (attached to the wrists, lower legs, back and head) and works for arbitrary human motions. Experiments on the recently released TNT15 dataset show that, using the same number of sensors, SIP achieves higher accuracy than the dataset baseline without using any video data. We further demonstrate the effectiveness of SIP on newly recorded challenging motions in outdoor scenarios such as climbing or jumping over a wall.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. SmartPoser: Arm Pose Estimation with a Smartphone and Smartwatch Using UWB and IMU Data

    cs.HC 2025-09 conditional novelty 5.0 of 10

    A phone and watch working together can track shoulder, elbow, and wrist positions to 11 cm median error using UWB ranging plus IMU data and no user-specific training.

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