终端滑动模式
控制理论(社会学)
稳健性(进化)
容错
执行机构
可逆矩阵
终端(电信)
滑模控制
趋同(经济学)
奇点
计算机科学
工程类
控制工程
控制(管理)
数学
分布式计算
非线性系统
人工智能
电信
生物化学
化学
物理
数学分析
量子力学
纯数学
经济
基因
经济增长
作者
Sendren Sheng‐Dong Xu,Chih‐Chiang Chen,Zheng-Lun Wu
标识
DOI:10.1109/tie.2015.2399397
摘要
This paper studies fault-tolerant control (FTC) designs based on nonsingular terminal sliding-mode control and nonsingular fast terminal sliding-mode control (NFTSMC). The proposed active FTC laws are shown to be able to achieve fault-tolerant objectives and maintain stabilization performance even when some of the actuators fail to operate. In comparison to existing sliding-mode control (SMC) fault-tolerant designs, the proposed schemes not only can retain the advantages of traditional SMC, including fast response, easy implementation, and robustness to disturbances/uncertainties, but also make the system states reach the control objective point in a finite amount of time. Moreover, they also resolve the potential singularity phenomena in traditional terminal and faster terminal SMC designs; meanwhile, the proposed NFTSMC fault-tolerant scheme also possesses the benefit of faster state convergence speed of NFTSMC. Finally, the proposed analytical results are also applied to the attitude control of a spacecraft. Simulation results demonstrate the benefits of the proposed schemes.
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