开关电源和相位控制器的谐波和传导干扰水平的仿真

J. Dawson, D. Bozec, D. Cullen, L. McCormack, B.W. Flynn
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引用次数: 6

摘要

本文描述了使用SPICE电路模拟器预测谐波电流水平的可行性,以及由相位控制灯调光器和反激变换器开关模式电源(SMPS)产生的传导干扰(9 kHz至30 MHz)。SPICE模型使用无源元件的真实模型和开关和控制电路的近似模型来构建,从而可以精确控制开关速率和占空比。对SPICE时域数据进行处理,预测谐波电流、平均传导干扰值和峰值传导干扰值。将模型与实测结果进行了比较。虽然谐波电流可以准确预测,但传导干扰的准确预测仍然存在重大问题。然而,SPICE模型的预测遵循负载变化的测量数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of harmonic and conducted interference levels from switched-mode power supplies and phase controllers
The paper describes work carried out to determine the feasibility of using a SPICE circuit simulator to predict harmonic current levels, and conducted interference (9 kHz to 30 MHz) produced by a phase controlled lamp dimmer and flyback converter switched-mode power supply (SMPS). The SPICE models are constructed using realistic models for the passive components and approximate models for the switching and control circuitry so that switching rates and duty cycles can be precisely controlled. The SPICE time-domain data was processed to predict the harmonic current and average and peak conducted interference values. The models are compared with measured results. Whilst the harmonic currents can be predicted accurately, there are still significant problems with the accurate prediction of conducted interference. However, the SPICE model predictions follow the measured data with changing load.
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