控制理论(社会学)
解耦(概率)
非线性系统
观察员(物理)
有界函数
跟踪误差
计算机科学
控制器(灌溉)
理论(学习稳定性)
断层(地质)
国家观察员
自适应控制
控制工程
故障检测与隔离
跟踪(教育)
控制系统
容错
分离原理
一致有界性
工程类
自适应系统
数学
国家(计算机科学)
非线性控制
稳健性(进化)
控制(管理)
标识
DOI:10.1109/tcyb.2025.3639224
摘要
When disturbances or nonlinearities couple the observer and the controller, implementing active fault-tolerant control (AFTC) via the separation principle (SP) becomes challenging. This article proposes a novel AFTC framework with the goal of decoupling design for a class of uncertain nonlinear systems, thereby recovering the use of SP in AFTC design. An observer is developed for fault diagnosis and state estimation based on the system outputs, and the boundedness of the estimation errors is guaranteed. Next, an active fault-tolerant controller integrated with an adaptive mechanism is constructed for fault accommodation using the obtained fault information. To mitigate bidirectional influences between the observer and controller designs, all estimation errors and disturbances are treated as new disturbances in the AFTC system (AFTCS), and adaptive updating terms are designed to compensate for these disturbances. The stability of the AFTCS is analyzed, ensuring that all signals in the closed-loop system remain bounded and that the output tracking error converges to a neighborhood around zero. The effectiveness of the proposed approach is illustrated through a numerical simulation example.
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