机器人
控制器(灌溉)
弹道
运动控制
计算机科学
控制理论(社会学)
人工智能
运动控制器
趋同(经济学)
机器人学
比例(比率)
控制工程
运动(物理)
控制(管理)
工程类
物理
量子力学
天文
农学
经济
生物
经济增长
作者
Sheng Xu,Tiantian Xu,Dong Li,Chenguang Yang,Chenyang Huang,Xinyu Wu
标识
DOI:10.1109/tcyb.2023.3269773
摘要
The widespread application of learning-based methods in robotics has allowed significant simplifications to controller design and parameter adjustment. In this article, robot motion is controlled with learning-based methods. A control policy using a broad learning system (BLS) for robot point-reaching motion is developed. A sample application based on a magnetic small-scale robotic system is designed without detailed mathematical modeling of the dynamic systems. The parameter constraints of the nodes in the BLS-based controller are derived based on Lyapunov theory. The design and control training processes for a small-scale magnetic fish motion are presented. Finally, the effectiveness of the proposed method is demonstrated by convergence of the artificial magnetic fish motion to the targeted area with the BLS trajectory, successfully avoiding obstacles.
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