人工肌肉
机器人
执行机构
计算机科学
仿生学
控制工程
选择(遗传算法)
工程类
人工智能
作者
Jun Zhang,Jun Sheng,Ciaran O’Neill,Conor J. Walsh,Robert J. Wood,Jee-Hwan Ryu,Jaydev P. Desai,Michael C. Yip
标识
DOI:10.1109/tro.2019.2894371
摘要
Robotic artificial muscles are a subset of artificial muscles that are capable of producing biologically inspired motions useful for robot systems, i.e., large power-to-weight ratios, inherent compliance, and large range of motions. These actuators, ranging from shape memory alloys to dielectric elastomers, are increasingly popular for biomimetic robots as they may operate without using complex linkage designs or other cumbersome mechanisms. Recent achievements in fabrication, modeling, and control methods have significantly contributed to their potential utilization in a wide range of applications. However, no survey paper has gone into depth regarding considerations pertaining to their selection, design, and usage in generating biomimetic motions. In this paper, we discuss important characteristics and considerations in the selection, design, and implementation of various prominent and unique robotic artificial muscles for biomimetic robots, and provide perspectives on next-generation muscle-powered robots.
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