A Fast Soft-Fault Diagnosis Procedure Using a First Nearest Neighbor Classification

Emanuel A. Dri, G. Peretti, E. Romero
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Abstract

This article proposes a fault diagnosis scheme for second-order switched-capacitor filters embedded in the Infineon PSoC1 reconfigurable microcontroller. The faults considered are single soft faults that diminish the capacitance of the capacitors. Specifically, the scheme focuses on incipient faults, which are the hardest to identify because they produce a small impact on the circuit’s performance. The scheme estimates the value of the degradation of the capacitors by employing a first nearest neighbor (1NN) classifier. Our proposal compares the output test patterns against a dictionary of selected fault patterns (one for each capacitor) using Dynamic Time Warping (DTW) distance measures. The easiness of construction of this dictionary and the conceptual simplicity of the method are the most relevant features of the proposal. The characterization of the scheme is made with MatLab simulations at a transfer-function level to limit the computational cost. The simulation results show that the diagnosis procedure can determine the capacitor that presents incipient faults.
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基于第一近邻分类的快速软故障诊断方法
针对英飞凌PSoC1可重构微控制器中嵌入的二阶开关电容滤波器,提出了一种故障诊断方案。所考虑的故障是减少电容器电容的单个软故障。具体来说,该方案侧重于早期故障,这是最难识别的,因为它们对电路性能的影响很小。该方案通过采用第一个最近邻(1NN)分类器来估计电容器的退化值。我们的建议使用动态时间翘曲(DTW)距离度量将输出测试模式与选定故障模式(每个电容器一个)的字典进行比较。该词典的构造容易和方法的概念简单性是该建议最相关的特点。为了限制计算成本,在传递函数水平上用MatLab仿真对该方案进行了表征。仿真结果表明,该诊断程序能够准确地判断出出现早期故障的电容器。
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