具有柔性身体的仿生多腿机器人:设计、运动和控制

IF 3.4 3区 医学 Q1 ENGINEERING, MULTIDISCIPLINARY
Xiang Li, Zhe Suo, Dan Liu, Jianfeng Liu, Wenqing Tian, Jixin Wang, Jianhua Wang
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引用次数: 0

摘要

具有柔性身体的仿生多足机器人体现了人类在模仿、学习和探索自然世界方面的聪明才智。与刚体机器人相比,这些具有柔性身体的机器人表现出卓越的运动能力。机器人的柔性身体不仅能提高移动速度和行走稳定性,还能增强在复杂地形中的适应性。本文重点介绍柔性本体的创新设计。首先,系统地概述了结构设计,包括人工脊柱和单轴/多轴铰接机构。其次,回顾了柔性体对机器人运动的增强作用,研究了身体自由度、刚度以及身体和四肢之间的协调控制对机器人运动的影响。第三,本文按控制架构全面概述了现有的机器人控制方法。最后,提出了具有柔性身体的仿生多足机器人的应用前景,并列举了其未来发展可能面临的挑战。本文旨在为仿生机器人研究提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bionic Multi-Legged Robots with Flexible Bodies: Design, Motion, and Control.

Bionic multi-legged robots with flexible bodies embody human ingenuity in imitating, learning, and exploring the natural world. In contrast to rigid-body robots, these robots with flexible bodies exhibit superior locomotive capabilities. The flexible body of the robot not only boosts the moving speed and walking stability but also enhances adaptability across complex terrains. This article focuses on the innovative design of flexible bodies. Firstly, the structural designs, including artificial spines and single/multi-axis articulation mechanisms, are outlined systematically. Secondly, the enhancement of robotic motion by flexible bodies is reviewed, examining the impact that body degrees of freedom, stiffness, and coordinated control between the body and limbs have on robotic motion. Thirdly, existing robotic control methods, organized by control architectures, are comprehensively overviewed in this article. Finally, the application prospects of bionic multi-legged robots with flexible bodies are offered, and the challenges that may arise in their future development are listed. This article aims to serve as a reference for bionic robot research.

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来源期刊
Biomimetics
Biomimetics Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
3.50
自引率
11.10%
发文量
189
审稿时长
11 weeks
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