arXiv:2603.27808cs.RO2026-03

用气压可调软关节实现物体刚度探测与自适应抓取

Probe-to-Grasp Manipulation Using Self-Sensing Pneumatic Variable-Stiffness Joints

  • 通过气压调节软关节刚度,结合内部压力测量感知接触力
  • 基于已知闭合位移与估算正压力,推断物体相对刚度
  • 低成本自感知系统适用于水果等变刚度物体的智能抓取

柔性物体因刚度变化大,抓取难度高。准确估计目标物体局部刚度,有助于选择稳定且不损伤物体的抓取姿态。本文提出一种基于被动软硬混合双指夹爪的探查-抓取框架,该夹爪配备自感知气动可变刚度关节。每个手指由两个刚性连杆通过软气压环连接,可通过内部气压控制关节刚度并实现柔顺交互。通过测量气压环内部压力,可估算接触力。在此基础上,提出一种实用探查策略,通过关联估算的法向力与已知夹爪闭合位移,推断物体相对刚度。通过弯曲角度与压力范围下的刚度标定实验验证了自感知模型,并在真实场景中展示了对空间刚度变化水果的刚度感知探查与抓取能力。该系统以最小成本实现刚度感知的软体操作,同时保留探查与抓取功能。

原文摘要 · Abstract (English)

Grasping deformable objects with varying stiffness remains a significant challenge in robotics. Estimating the local stiffness of a target object is important for determining an optimal grasp pose that enables stable pickup without damaging the object. This paper presents a probe-to-grasp manipulation framework for estimating the relative stiffness of objects using a passive soft-rigid two-finger hybrid gripper equipped with self-sensing pneumatic variable-stiffness joints. Each finger of the gripper consists of two rigid links connected by a soft pneumatic ring placed at the joint, enabling both compliant interaction and controllable joint stiffness via internal pressurization. By measuring the pressure inside the pneumatic ring, we can estimate the interaction force during contact. Building on this, we propose a practical probing strategy to infer relative object stiffness by correlating the estimated normal force with known gripper closing displacement. We validate the self-sensing model through stiffness characterization experiments across bending angles and pressure ranges, and demonstrate stiffness-aware probing-and-grasping in real-life applications: selecting grasp locations on fruits with spatially varying stiffness. The proposed system offers a minimal, low-cost sensing approach for stiffness-aware soft manipulation while retaining probing and grasping capability.

软体机器人刚度感知气动执行器抓取

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