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Fault Diagnosis for Nonlinear Analog Circuit based on Harmonic Decomposition and Coherent Measurement

机译:基于谐波分解和相干测量的非线性模拟电路故障诊断

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This paper, a fault diagnosis approach for nonlinear dynamic circuit is presented based on harmonic decomposition and coherent measurement. According to the separability of Volterra spectral in weakly nonlinear circuit under AM stimulation, the Volterra response can decompose into linear sub-circuits based on ARMA harmonic decomposition firstly. In linear sub-circuits, the mapping relationship between the fault characteristics and fault states will become more clearly. Then, the dynamic linear sub-circuit is transformed into static circuit by coherent measurement, and the diagnosis equation is created with circuit node-equation. The fault diagnosis can be implemented by calculating the nodes' fault-current. Finally, with an example to illuminate the proposed is available.
机译:本文基于谐波分解和相干测量,提出了一种非线性动态电路故障诊断方法。根据弱非线性电路在AM刺激下的volterra光谱的可分离性,Volterra反应首先基于ARMA谐波分解的基于ARMA谐波分解的线性子电路。在线性子电路中,故障特性和故障状态之间的映射关系将变得更加清晰。然后,通过相干测量将动态线性子电路转换为静态电路,并且使用电路节点方程创建诊断方程。通过计算节点的故障电流可以实现故障诊断。最后,通过一个例子来照亮提议可用。

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