利用基于dsPIC的混沌脉冲位置调制技术降低升压变换器中的电磁干扰

Rabiaa Gamoudi, D. Chariag, L. Sbita
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引用次数: 0

摘要

混沌PWM控制是一种新兴的抑制直流电源变换器传导电磁干扰(EMI)的方法。它通过在所需的宽频带中围绕中心频率传播谐波,有效地抑制了峰值谐波。因此,EMI频谱被平滑和平坦,降低了EMI噪声水平。本文提出了一种基于Logistic映射的混沌脉冲位置调制技术。它是通过dsPIC微控制器数字生成的。然后,将其应用于升压变换器,以减少内部产生的传导EMI。为了寻找精度,使用LTspice开发了升压转换器的电磁(EM)原型,以分析EMI降低水平。最后进行了频谱仿真。对升压变换器的混沌PPM与传统PWM进行了基准测试。仿真结果表明,在EMI频谱平坦的情况下,EMI显著降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conducted EMI Reduction in Boost Converter Using dsPIC Based Chaotic Pulse Position Modulation Technique
Chaotic PWM control is a new emergent method for suppressing conducted electromagnetic interference (EMI) generated by the dc-dc power converter. It effectively suppresses the peaky harmonics by spreading it all around the central frequency in the desired wide frequency band. Thus the EMI spectrum is smoothed and flattened with a reduced EMI noise level. The current paper presents a chaotic Pulse Position Modulation (PPM) technique based on the Logistic map. It is generated digitally through a dsPIC microcontroller. Then, it is applied to a boost converter to reduce the conducted EMI generated within. Looking for accuracy, an electromagnetic (EM) prototype of the boost converter was developed using LTspice in order to analyse the EMI reduction level. Finally, spectrum simulations were carried out. The chaotic PPM was benchmarked to traditional PWM for the boost converter. Simulations show a significant reduction of EMI with a flattened EMI spectrum.
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