arXiv:2509.13998cs.RO2025-09被引 1

用折纸结构软体阵列实现低密度高灵活的物体操控

Flexible and Foldable: Workspace Analysis and Object Manipulation Using a Soft, Interconnected, Origami-Inspired Actuator Array

  • 用可变形连接层将折纸式三自由度执行器连成柔性操控面
  • 相同执行器数量下操控面积提升1.84倍,降低系统复杂度
  • 适合需要柔韧表面操控的低成本机器人场景

物体操作是机器人领域的核心挑战,需在操控能力、系统复杂度和吞吐量间权衡。分布式操纵系统(DMS)通过执行器阵列协同运动完成复杂任务,但现有设计依赖高密度执行器,且对物-执行器尺度比有约束,限制适应性。本文提出一种新型DMS设计,采用由3-DoF折纸启发的机器人单元组成的阵列,并通过柔顺表面层互联。与传统DMS不同,该设计不仅可在执行器末端进行操作,还能在连接所有执行器的柔性表面上实现连续可控的操控。我们分析了系统的综合工作空间,推导出简单运动基元,并展示了其对简单几何物体跨阵列移动的能力。通过利用单元间的连接材料,本方法显著降低执行器密度,在不增加执行器数量的前提下,使可操控面积扩大1.84倍。该设计为传统高密度阵列提供了成本更低、复杂度更小的替代方案,并为基于柔性互联表面的新操控策略开辟了可能性。

原文摘要 · Abstract (English)

Object manipulation is a fundamental challenge in robotics, where systems must balance trade-offs among manipulation capabilities, system complexity, and throughput. Distributed manipulator systems (DMS) use the coordinated motion of actuator arrays to perform complex object manipulation tasks, seeing widespread exploration within the literature and in industry. However, existing DMS designs typically rely on high actuator densities and impose constraints on object-to-actuator scale ratios, limiting their adaptability. We present a novel DMS design utilizing an array of 3-DoF, origami-inspired robotic tiles interconnected by a compliant surface layer. Unlike conventional DMS, our approach enables manipulation not only at the actuator end effectors but also across a flexible surface connecting all actuators; creating a continuous, controllable manipulation surface. We analyse the combined workspace of such a system, derive simple motion primitives, and demonstrate its capabilities to translate simple geometric objects across an array of tiles. By leveraging the inter-tile connective material, our approach significantly reduces actuator density, increasing the area over which an object can be manipulated by x1.84 without an increase in the number of actuators. This design offers a lower cost and complexity alternative to traditional high-density arrays, and introduces new opportunities for manipulation strategies that leverage the flexibility of the interconnected surface.

柔性机器人分布式操控折纸结构低密度操控

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