可编程的软气动伸缩执行器,让软体机器人自动展开并适应狭小空间。
Programmable Telescopic Soft Pneumatic Actuators for Deployable and Shape Morphing Soft Robots
- 通过参数化几何生成器,自定义软体执行器结构。
- 实现轴向伸长、弯曲与刚度调控,设计参数与性能关系清晰。
- 应用于可展开四足软机器人,自动适应狭窄环境。
软体机器人能够实现任意方向受力和形态变换,但其设计自由度受维度诅咒限制,难以高效利用。本文提出一种可参数化的软气动伸缩执行器(PTSPAs),在充气时沿轴向伸长,适用于可展开结构与受限空间操作。我们开发了参数化几何生成器,支持从高层输入定制执行器模型,并通过半自动化实验系统探索关键参数。研究揭示了设计参数与伸长、弯曲、膨胀及刚度之间的明确关系。最终,我们将该执行器用于可展开的软体四足机器人,其腿部可自动展开行走,实现对狭小空间的自适应。PTSPAs为大形变需求的可展开与形状重构结构提供了新设计范式。
原文摘要 · Abstract (English)
Soft Robotics presents a rich canvas for free-form and continuum devices capable of exerting forces in any direction and transforming between arbitrary configurations. However, there is no current way to tractably and directly exploit the design freedom due to the curse of dimensionality. Parameterisable sets of designs offer a pathway towards tractable, modular soft robotics that appropriately harness the behavioural freeform of soft structures to create rich embodied behaviours. In this work, we present a parametrised class of soft actuators, Programmable Telescopic Soft Pneumatic Actuators (PTSPAs). PTSPAs expand axially on inflation for deployable structures and manipulation in challenging confined spaces. We introduce a parametric geometry generator to customise actuator models from high-level inputs, and explore the new design space through semi-automated experimentation and systematic exploration of key parameters. Using it we characterise the actuators' extension/bending, expansion, and stiffness and reveal clear relationships between key design parameters and performance. Finally we demonstrate the application of the actuators in a deployable soft quadruped whose legs deploy to walk, enabling automatic adaptation to confined spaces. PTSPAs present new design paradigm for deployable and shape morphing structures and wherever large length changes are required.
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