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Controlling DC–DC converters by chaos-based pulse width modulation to reduce EMI

机译:通过基于混沌的脉冲宽度调制来控制DC-DC转换器以降低EMI

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摘要

In this paper, periodic and chaotic behaviors of DC–DC converters under certain parametric conditions are simulated, experimentally verified, and analyzed. Motivated by the work of J.H.B. Deane and D.C. Hamill in 1996, where chaotic phenomena are useful in suppressing electromagnetic interference (EMI) by adjusting the parameters of the DC–DC converter and making it operate in chaos, a chaos-based pulse width modulation (CPWM) is proposed to distribute the harmonics of the DC–DC converters continuously and evenly over a wide frequency range, thereby reducing the EMI. The output waves and spectral properties of the EMI are simulated and analyzed as the carrier frequency or amplitude changes with regard to different chaotic maps. Simulation and experimental results are given to illustrate the effectiveness of the proposed CPWM, which provides a good example of applying chaos theory in engineering practice.
机译:在本文中,对DC-DC转换器在某些参数条件下的周期性和混沌行为进行了仿真,实验验证和分析。受J.H.B. Deane和DC Hamill在1996年提出了一种混沌方法,该方法通过调整DC-DC转换器的参数并使其处于混沌状态来抑制电磁干扰(EMI),提出了一种基于混沌的脉宽调制(CPWM) DC-DC转换器的谐波在很宽的频率范围内连续且均匀地分布,从而降低了EMI。随着载波频率或幅度相对于不同混沌图的变化,对EMI的输出波和频谱特性进行仿真和分析。仿真和实验结果表明了所提出的CPWM的有效性,这为在工程实践中应用混沌理论提供了一个很好的例子。

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