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Performance Index for Optimizing Sensor Fault Detection of a Class of Nonlinear Systems

机译:优化一类非线性系统传感器故障检测的性能指标

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This paper develops a performance index that can be used to find the optimal design parameters of the observer-based residual generator and adaptive threshold of a fault detection scheme for a class of nonlinear systems. The performance of the fault detection scheme is analyzed with respect to the fault detectability of incipient sensor faults, which depends on the dynamic behavior of the residual and the adaptive threshold generator. The proposed performance index is based on the distance between two limit sets that are guaranteed to include the residual under fault-free and faulty conditions. The novelty of this distance metric stems from the parametrization of the limit sets in relation to (i) the design parameters of both the residual generator and adaptive threshold, (ii) the bounds on the system disturbances and measurement noise, and (iii) the fault function and evolution rate. An optimization problem is formulated for finding the design parameters of the fault detection scheme such that the set of guaranteed strongly detectable faults is maximized, where this set is defined based on the distance between the separated fault-free and faulty limit set.
机译:本文开发了一种性能指标,可用于找到基于观测器的残差生成器的最佳设计参数和一类非线性系统故障检测方案的自适应阈值。针对初始传感器故障的故障可检测性,分析了故障检测方案的性能,这取决于残差和自适应阈值生成器的动态行为。拟议的性能指标基于两个极限集之间的距离,保证在无故障和有故障的条件下包括残差。该距离量度的新颖性源于与(i)残差发生器和自适应阈值的设计参数,(ii)系统干扰和测量噪声的界限以及(iii)极限集的参数化有关断层函数和演化速率。为找到故障检测方案的设计参数制定了一个优化问题,以使保证的强烈可检测故障的集合最大化,其中根据分离的无故障极限集和故障极限集之间的距离定义该集合。

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