弯曲链接的张拉整体机器人实现高效滚动与稳定性的平衡。
When Rolling Gets Weird: A Curved-Link Tensegrity Robot for Non-Intuitive Behavior
- 用弧形连杆设计,通过内部质量移动改变接触点实现动态控制。
- 仿真与实验验证了非直观滚动行为,可实现无绳自主移动。
- 结构具备自适应减震能力,适合复杂地形探索任务。
传统直线连杆张拉整体机器人虽具移动性,但速度受限;球形机器人虽滚动高效,却难适应非结构化地形。本文提出一种半圆形弧形连杆张拉整体机器人,基于现有几何静力学建模框架[1],改进了张拉整体探索机器人2(TeXploR2)的设计。内部可移动质量沿弧形连杆瞬时滑动,动态改变与地面的两个接触点。准静态、分段连续运动序列的仿真揭示了惯性系与机体坐标系间的位移新规律。非直观滚动行为经无线原型实验验证,成功实现动态移动。初步撞击测试表明该结构具有优异的抗冲击性与形变适应能力。未来工作将完善动态模型,开展真实环境扩展测试,并优化原型,增加更多弧形连杆及接触点以提升可控性。
原文摘要 · Abstract (English)
Conventional mobile tensegrity robots constructed with straight links offer mobility at the cost of locomotion speed. While spherical robots provide highly effective rolling behavior, they often lack the stability required for navigating unstructured terrain common in many space exploration environments. This research presents a solution with a semi-circular, curved-link tensegrity robot that strikes a balance between efficient rolling locomotion and controlled stability, enabled by discontinuities present at the arc endpoints. Building upon an existing geometric static modeling framework [1], this work presents the system design of an improved Tensegrity eXploratory Robot 2 (TeXploR2). Internal shifting masses instantaneously roll along each curved-link, dynamically altering the two points of contact with the ground plane. Simulations of quasistatic, piecewise continuous locomotion sequences reveal new insights into the positional displacement between inertial and body frames. Non-intuitive rolling behaviors are identified and experimentally validated using a tetherless prototype, demonstrating successful dynamic locomotion. A preliminary impact test highlights the tensegrity structure's inherent shock absorption capabilities and conformability. Future work will focus on finalizing a dynamic model that is experimentally validated with extended testing in real-world environments as well as further refinement of the prototype to incorporate additional curved-links and subsequent ground contact points for increased controllability.
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