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Fault-tolerant observer design with a tolerance measure for systems with sensor failure

机译:容错观察器设计,带有传感器故障系统的公差测量

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摘要

A fault-tolerant switching observer design methodology is proposed. The aim is to maintain a desired level of closed-loop performance under a range of sensor fault scenarios while the fault-free nominal performance is optimized. The range of considered fault scenarios is determined by a minimum number p of assumed working sensors. Thus the smaller p is, the more fault tolerant is the observer. This is then used to define a fault tolerance measure for observer design. Due to the combinatorial nature of the problem, a semidefinite relaxation procedure is proposed to deal with the large number of fault scenarios for systems that have many vulnerable sensors. The procedure results in a significant reduction in the number of constraints needed to solve the problem. Two numerical examples are presented to illustrate the effectiveness of the fault-tolerant observer design.
机译:提出了一种容错切换观测器设计方法。目的是在一系列无传感器故障情况下维持理想水平的闭环性能,同时优化无故障标称性能。所考虑的故障情况的范围由假定工作传感器的最小数量p确定。因此,p越小,观察者的容错能力越强。然后将其用于定义观察者设计的容错度量。由于问题的组合性质,针对具有许多易受攻击的传感器的系统,提出了一种半确定松弛程序来处理大量故障情况。该过程大大减少了解决问题所需的约束数量。给出两个数值示例,以说明容错观察器设计的有效性。

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