机器人航天器
机器人
灵活性(工程)
太空探索
空格(标点符号)
空间环境
人工智能
软机器人
稳健性(进化)
机器人学
计算机科学
控制工程
系统工程
模拟
人机交互
航空航天工程
工程类
数学
物理
化学
地球物理学
基因
操作系统
生物化学
统计
作者
Yongchang Zhang,Pengchun Li,Jiale Quan,Longqiu Li,Guangyu Zhang,Dekai Zhou
标识
DOI:10.1002/aisy.202200071
摘要
The development of space robots is vital to broadening human cognitive boundaries. Space robots have been deployed in space science experiments, extravehicular operations, and deep space exploration. The application of space robots undoubtedly reduces the risk and cost of space activities. Traditional space robots primarily utilize rigid structures, resulting in limited degrees of freedom, which restricts their operational capabilities. In contrast, soft robots with greater flexibility and robustness may be used for future space exploration. Soft robots applied in space environments must overcome significant challenges associated with ultrahigh vacuum, microgravity, extreme temperatures, and high‐energy radiation. Herein, a comprehensive analysis of the key advantages of soft robots is presented based on the special requirements of the space environments for soft robots. Furthermore, brief insights into how soft robots must be changed in terms of their design, modeling, fabrication, sensing, and control to adapt to space environments are discussed. Specifically, soft robot scenarios with potential space application value are introduced. Finally, opinions regarding the potential directions of soft space robots are provided.
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