A perturbation-based model for rectifier circuits

V. B. Vats, H. Parthasarathy
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引用次数: 5

Abstract

A perturbation-theoretic analysis of rectifier circuits is presented. The governing differential equation of the half-wave rectifier with capacitor filter is analyzed by expanding the output voltage as a Taylor series with respect to an artificially introduced parameter in the nonlinearity of the diode characteristic as is done in quantum theory. The perturbation parameter introduced in the analysis is independent of the circuit components as compared to the method presented by multiple scales. The various terms appearing in the perturbation series are then modeled in the form of an equivalent circuit. This model is subsequently used in the analysis of full-wave rectifier. Matlab simulation results are included which confirm the validity of the theoretical formulations. Perturbation analysis acts a helpful tool in analyzing time-varying systems and chaotic systems.
基于微扰的整流电路模型
对整流电路进行了微扰理论分析。采用量子理论的方法,将输出电压对二极管非线性特性中人为引入的参数展开为泰勒级数,分析了带电容滤波的半波整流器的控制微分方程。与多尺度方法相比,分析中引入的微扰参数与电路元件无关。在扰动序列中出现的各种项然后以等效电路的形式建模。该模型随后用于全波整流器的分析。Matlab仿真结果验证了理论公式的有效性。摄动分析是分析时变系统和混沌系统的有效工具。
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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