arXiv:2410.21445cs.RO2024-10

用可调尾部结构机器人研究形态如何影响尾巴功能。

TALE-teller: Tendon-Actuated Linked Element Robotic Testbed for Investigating Tail Functions

  • 构建可更换骨骼、关节和肌腱的模块化机器人尾
  • 不同椎骨比例导致尾尖位置差异显著
  • 为仿生与机器人尾设计提供形态-功能关联依据

尾巴在生物与机器人中具有表达、抓握和防御等多种功能,其脊椎长度模式多样,但形态与功能之间的精确机制尚未明确。由于脊椎尾部是复杂的肌骨骼结构,直接实验与计算建模均具挑战。本文提出一种基于肌腱驱动的模块化机器人测试平台TALE,通过3D打印骨骼、硅胶关节与可变肌腱配置,模拟现存、灭绝甚至理论中的尾部形态。我们首先实测并仿真了关节刚度,验证了不同椎骨比例会导致尾部弯曲方式显著不同。随后对比了两种常见脊椎比例与一种理论形态的最大弯曲状态,发现均匀关节弯曲下尾尖位置存在明显差异,表明形态对整体功能有重要影响。未来可引入更复杂形态以揭示多种尾功能的作用机制。该基础研究将帮助识别决定尾功能的关键特征,指导机器人尾的设计。相关图像与视频见项目页:https://www.embirlab.com/tale。

原文摘要 · Abstract (English)

Tails serve various functions in both robotics and biology, including expression, grasping, and defense. The vertebrate tails associated with these functions exhibit diverse patterns of vertebral lengths, but the precise mechanisms linking form to function have not yet been established. Vertebrate tails are complex musculoskeletal structures, making both direct experimentation and computational modeling challenging. This paper presents Tendon-Actuated Linked-Element (TALE), a modular robotic test bed to explore how tail morphology influences function. By varying 3D printed bones, silicone joints, and tendon configurations, TALE can match the morphology of extant, extinct, and even theoretical tails. We first characterized the stiffness of our joint design empirically and in simulation before testing the hypothesis that tails with different vertebral proportions curve differently. We then compared the maximum bending state of two common vertebrate proportions and one theoretical morphology. Uniform bending of joints with different vertebral proportions led to substantial differences in the location of the tail tip, suggesting a significant influence on overall tail function. Future studies can introduce more complex morphologies to establish the mechanisms of diverse tail functions. With this foundational knowledge, we will isolate the key features underlying tail function to inform the design for robotic tails. Images and videos can be found on TALE's project page: https://www.embirlab.com/tale.

机器人尾形态学仿生设计

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