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Proximity and Visuotactile Point Cloud Fusion for Contact Patches in Extreme Deformation

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arxiv 2307.03839 v2 pith:BDY7EMV7 submitted 2023-07-07 cs.RO

classification cs.RO
keywords contactvisuotactilealgorithmpatchproximitybaselinesfusiongeometry
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Visuotactile sensors are a popular tactile sensing strategy due to high-fidelity estimates of local object geometry. However, existing algorithms for processing raw sensor inputs to useful intermediate signals such as contact patches struggle in high-deformation regimes. This is due to physical constraints imposed by sensor hardware and small-deformation assumptions used by mechanics-based models. In this work, we propose a fusion algorithm for proximity and visuotactile point clouds for contact patch segmentation, entirely independent from membrane mechanics. This algorithm exploits the synchronous, high spatial resolution proximity and visuotactile modalities enabled by an extremely deformable, selectively transmissive soft membrane, which uses visible light for visuotactile sensing and infrared light for proximity depth. We evaluate our contact patch algorithm in low (10%), medium (60%), and high (100%+) strain states. We compare our method against three baselines: proximity-only, tactile-only, and a first principles mechanics model. Our approach outperforms all baselines with an average RMSE under 2.8 mm of the contact patch geometry across all strain ranges. We demonstrate our contact patch algorithm in four applications: varied stiffness membranes, torque and shear-induced wrinkling, closed loop control, and pose estimation.

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

  1. PICO: Reconstructing 3D People In Contact with Objects

    cs.CV 2025-04 conditional novelty 6.0 of 10

    PICO introduces a dataset with dense bijective body-object contact annotations on natural images and a retrieval-plus-optimization method that reconstructs 3D human-object interaction, generalizing to novel object classes.

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