Polynomial fault diagnosis of linear analog circuits

Z. Garczarczyk
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引用次数: 6

Abstract

In this paper a diagnostic method for analog electronic circuits is presented. The approach is based on determination of the variations of circuit functions with use of higher order sensitivity coefficients. Knowing values of sensitivity coefficients one can formulate multivariate polynomial equations. The solution of test equations with respect to element's deviations results in fault identification. This task can be realized by using Grobner bases to transform a nonlinear equation into triangular form. It is solved by successive computation of the univariate polynomial equation and back substitution. Solution of the polynomial equation is treated as the eigenvalue problem of companion matrix by QR algorithm. Numerical results are presented to clarify method and prove its efficiency.
线性模拟电路的多项式故障诊断
本文提出了一种模拟电路的故障诊断方法。该方法基于利用高阶灵敏度系数确定电路函数的变化。知道敏感系数的值,就可以建立多元多项式方程。测试方程的解与元件的偏差有关,从而进行故障识别。这个任务可以通过使用格罗布纳基将非线性方程转换成三角形来实现。通过单变量多项式方程的逐次计算和反代入来求解。用QR算法将多项式方程的解处理为伴随矩阵的特征值问题。数值结果说明了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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