Experimental study of electromagnetic disturbances in common and differential modes in a circuit based on two DC/DC boost static converter in parallel

B. Benazza, A. Bendaoud, H. Slimani, M. Benaissa, M. Flitti, A. Zeghoudi
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Abstract

Introduction. An electronic control and closing control at the switch (MOSFET) will allow a parallel connection of two DC/DC boost converters. The reason for paralleling converters is to increase the efficiency of the power conversion process. This means that the overall power loss on the main switches is half the power loss on the main switch of a converter. It has been proven that DC-DC converters operating in parallel have different dynamics than a single converter. In this paper, the study is based on a system of two boost converters operating in parallel under current mode control. Although two converters operating in parallel increase the efficiency of the system, if the control parameters are not chosen correctly, the system becomes unstable and starts to oscillate. Purpose of this work is to present the analysis of high frequency electromagnetic disturbances caused by the switching of power switches in DC/DC boost static converters mounted in parallel in the presence of cables. We will study the improvement of the electromagnetic compatibility performances which can be brought by the choice of a static converters for industrial use. Methods. For the study of the path of the currents in common mode and in differential mode, it was possible to evaluate experimentally the electromagnetic compatibility impact in common mode and in differential mode of two boost converters connected in parallel in an electric circuit in connection with the source through a printed circuit board of connection between the source and the load, while using the two basic methods, namely the prediction of the conducted electromagnetic interference, the temporal simulation and the frequency simulation. Results. All the obtained results are validated by experimental measurements carried out at the Djillali Liabes University Sidi-Bel-Abbes in Laboratory of Applications of Plasma, Electrostatics and Electromagnetic Compatibility (APELEC). The experimental results obtained in common mode and in differential mode at low, medium and high frequencies are compared between the parallel boost test with and without electromagnetic compatibility filter.
基于两个DC/DC升压静态变换器并联电路共模和差模电磁干扰的实验研究
介绍。开关处的电子控制和闭合控制(MOSFET)将允许两个DC/DC升压转换器并联连接。采用并联变流器的原因是为了提高功率转换过程的效率。这意味着主开关的总功率损耗是转换器主开关功率损耗的一半。事实证明,并联工作的DC-DC变换器具有不同于单个变换器的动态特性。本文的研究是基于两个升压变换器在电流模式控制下并联工作的系统。虽然两个变流器并联运行提高了系统的效率,但如果控制参数选择不正确,系统就会变得不稳定并开始振荡。本文的目的是分析在电缆存在的情况下并联安装的DC/DC升压静态变换器中电源开关的开关所引起的高频电磁干扰。我们将研究选择工业用的静态变换器所能带来的电磁兼容性能的改善。方法。研究电流的路径在共模和差模,可以评估实验的电磁兼容性影响共模和差模并行连接的两个提高转换器的电路连接与源通过印刷电路板之间的连接源和负载,同时使用两种基本方法,即预测进行了电磁干扰,时间仿真和频率仿真。结果。所有得到的结果都得到了在Djillali Liabes大学Sidi-Bel-Abbes等离子体、静电和电磁兼容性应用实验室(APELEC)进行的实验测量的验证。比较了带和不带电磁兼容滤波器的并联升压试验在低、中、高频共模和差分模式下的实验结果。
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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