2026· IEEE Transactions on robotics· Vol 42, pp. 3215-3234· 0 citations· 64 references
Abstract
Underactuated robotic hands offer high adaptability and control simplicity, yet limited dexterity often constrains their manipulation capabilities. To address this limitation, this article presents the G-raph hand, a reconfigurable anthropomorphic robotic hand designed for stable in-hand manipulation while maintaining control simplicity. Inspired by human manipulation, the design integrates underactuated fingers with a reconfigurable palm featuring a central compliant mechanism. This biomimetic architecture enables both active reconfiguration and passive adaptation by modulating finger-base distribution. Furthermore, a hybrid control scheme of in-hand manipulation is developed, combining position and force-feedback control with a lightweight gait planning strategy based on rapid closure property evaluations. By integrating motion intent and system stability, the proposed framework facilitates stable grasping and significant object reorientation. Kinematic workspace analysis and extensive multifinger manipulation experiments demonstrate that the G-raph hand and its associated control framework achieve reliable, flexible, and anthropomorphic performance in complex tasks.
Achieving human-like compliant manipulation remains a fundamental challenge in robot hands due to the difficulty of realizing biomechanical compatibility, compliant interaction, and dexterous operation. To address this, we propose a human-compatible anthropomorphic dexterous hand inspired by the anatomical structure an...
Qi Luo, Sheng Jin, Yong-Zhi Luo et al.· Bioinspiration & Biomimetics· 0 citations
In-hand assembly is constrained by the need to maintain grasps on two separate parts while controlling their relative motion within a single hand. To enable both in-hand assembly and manipulation, we present a reconfigurable dual-opposition architecture. Specifically, to support simultaneous grasping of two parts and c...
William Su, Yunosuke Nakamura, Yi-Xiao Wang et al.· 1 citation
Soft robotic hands face trade-offs between flexibility and load capacity, with rigid-palm designs limiting grasping conformity and fully soft structures struggling under payloads. Existing pneumatic systems suffer from tubing interference and poor sealing. This study presents a bioinspired modular hand combining rigi...
Rui-Qi Yin, Chuan-Wang Liu, Zhen-Hao Sun et al.· Robotica (Cambridge. Print)· 0 citations
Dual-arm robots are gaining prominence in modern industrial automation, particularly in smart manufacturing, driven by their exceptional flexibility, collaborative potential, and anthropomorphic design. Modern applications increasingly demand capabilities in complex assembly, precision manipulation, and close human-rob...
Yang Zhou, Chen-Xi Qu, Jia-Qi Wei et al.· Bioinspiration & Biomimetics· 0 citations
This letter presents a soft robotic arm–gripper system based on a deployable braided structure, where the arm and gripper are monolithically integrated through spatially varying braiding parameters without rigid connectors. The arm segment adopts a hybrid dual-layer architecture, whose outer constraining layer decouple...
Zufeng Shang, Le Yin, Jia-Rui Chen et al.· IEEE Robotics and Automation...· 0 citations
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