控制理论(社会学)
可达性
执行机构
观察员(物理)
计算机科学
国家观察员
模式(计算机接口)
跳跃
断层(地质)
滑模控制
马尔可夫过程
数学
控制(管理)
算法
人工智能
非线性系统
地震学
地质学
物理
操作系统
统计
量子力学
标识
DOI:10.1109/tac.2019.2904435
摘要
This paper is concerned with the fault and state estimation problem for Markovian jump systems (MJSs) with simultaneous actuator and sensor faults. To deal with the design issues, we propose a novel descriptor reduced-order sliding mode observer (SMO), based on which the estimation of the actuator faults, sensor faults, and the states can be obtained simultaneously. Compared with the traditional SMO design issues in MJSs, we reconstruct the actuator faults directly without employing the equivalent output error injection method. Thus, the reachability analysis of the sliding surface is not necessary. The superiority of this kind of the SMO method is that the sliding surface switching problem is avoided. Finally, the effectiveness (as suggested by the theoretical results) of the approach described is tested on a mobile manipulator by simulation studies.
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