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AllTact Fin Ray: A Compliant Robot Gripper with Omni-Directional Tactile Sensing

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arxiv 2504.18064 v1 pith:JLNDIE6U submitted 2025-04-25 cs.RO

AllTact Fin Ray: A Compliant Robot Gripper with Omni-Directional Tactile Sensing

classification cs.RO
keywords sensingcontacttactiledeformationgripperrobotalltactbody
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Tactile sensing plays a crucial role in robot grasping and manipulation by providing essential contact information between the robot and the environment. In this paper, we present AllTact Fin Ray, a novel compliant gripper design with omni-directional and local tactile sensing capabilities. The finger body is unibody-casted using transparent elastic silicone, and a camera positioned at the base of the finger captures the deformation of the whole body and the contact face. Due to the global deformation of the adaptive structure, existing vision-based tactile sensing approaches that assume constant illumination are no longer applicable. To address this, we propose a novel sensing method where the global deformation is first reconstructed from the image using edge features and spatial constraints. Then, detailed contact geometry is computed from the brightness difference against a dynamically retrieved reference image. Extensive experiments validate the effectiveness of our proposed gripper design and sensing method in contact detection, force estimation, object grasping, and precise manipulation.

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Cited by 1 Pith paper

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

  1. OmniUMI: Towards Physically Grounded Robot Learning via Human-Aligned Multimodal Interaction

    cs.RO 2026-04 unverdicted novelty 5.0

    OmniUMI introduces a multimodal handheld interface that synchronously records RGB, depth, trajectory, tactile, internal grasp force, and external wrench data for training diffusion policies on contact-rich robot manipulation.