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Robust fault diagnosis for DC-DC Boost converters via switched systems

机译:通过交换系统对DC-DC升压转换器的鲁棒故障诊断

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摘要

In this paper, an effective system for fault detection and fault identification is proposed for DC-DC Boost converters, and the effectiveness of the method is proved from theoretical analysis, simulation, and experimental verification respectively. The switched systems are modeled and some of the fault models are analyzed based on the switched characteristics of the DC-DC Boost converter firstly. Then, the core of the method in this paper is to design a robust linear switch fault detection observer and a set of fault recognition observers. The fault detection observer detects a fault based on the residual among physical output and estimated output. Once the system detects faults, it automatically turns on the identification observers. Meanwhile, the system selects appropriate adaptive rules to estimate the value of the faulty component and achieves the adaptive parameter identification. The location of the fault is identified by comparing several residual evaluation functions. Finally, simulation and semi-physical simulation results testify to the effectiveness of the proposed approach.
机译:本文提出了一种用于DC-DC升压转换器的故障检测和故障识别的有效系统,并分别从理论分析,模拟和实验验证中证明了该方法的有效性。基于DC-DC升压转换器的开关特性,分析了开关系统的建模和一些故障模型。然后,本文中的方法的核心是设计坚固的线性开关故障检测观察者和一组故障识别观察者。故障检测观察者基于物理输出和估计输出之间的残差检测故障。系统检测到故障后,它会自动打开识别观察者。同时,系统选择适当的自适应规则来估计故障组件的值并实现自适应参数识别。通过比较若干残差评估函数来识别故障的位置。最后,模拟和半物理仿真结果证明了所提出的方法的有效性。

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