Multiple fault diagnosis in analog circuits using the indirect compensation theorem

V. Filaretov, S. Kurganov, K. Gorshkov
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Abstract

A method for the multiple faults diagnosis in linear analog circuits is presented in this paper. The proposed approach is based upon the concept named by the indirect compensation theorem. This theorem is reducing the procedure of fault diagnosis in the analog circuit to the symbolic analysis process. An extension of the indirect compensation theorem for the linear subcircuit is proposed. The indirect compensation provides equivalent replacement of the n-ports subcircuit by n norators and n fixators of voltages and currents. The proposed multiple faults diagnosis techniques can be used for evaluation of any kind of terminal characteristics of the two-port network. For calculation of the circuit determinant expressions, the Generalized Parameter Extraction Method is implemented. The main advantage of the analysis method is that it is cancellation free. It requires neither matrix nor ordinary graph description of the circuit. The process of symbolic circuit analysis is automated by the freeware computer program Cirsym which can be used online. The experimental results are presented to show the efficiency and reliability of the proposed technique.
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基于间接补偿定理的模拟电路多故障诊断
提出了一种线性模拟电路多故障诊断方法。该方法基于间接补偿定理的概念。该定理将模拟电路的故障诊断过程简化为符号分析过程。对线性子电路的间接补偿定理进行了推广。间接补偿提供了用n个电压和电流调节器和固定器等效替换n个端口子电路。所提出的多故障诊断技术可用于评估双端口网络的任何类型的终端特征。对于电路行列式的计算,采用了广义参数提取方法。这种分析方法的主要优点是不存在消去。它既不需要矩阵也不需要电路的普通图形描述。符号电路的分析过程由可在线使用的免费计算机程序Cirsym自动完成。实验结果表明了该方法的有效性和可靠性。
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