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Modelling process and optimization of EMC filters for power electronics applications

机译:电力电子应用的EMC滤波器的建模过程和优化

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Purpose - The frequency simulation and optimisation of electromagnetic compatibility (EMC) filter is often computation time consuming. The purpose of this paper is to propose an approach for easy and fast modelling and optimization of power electronics structures. Design/methodology/approach - The paper proposes an approach for easy and fast modelling and optimization of power electronics structures. It focuses on the EMC filter design. To achieve this task time simulation, FFT and automatic frequency modelling are combined. Findings - An automatic frequency modelling is proposed and also gives automatically the model gradients. Therefore, the model can be used to optimize the EMC filter, but also can help in choosing its topology. Several optimization algorithms are used and compared. Research limitations/implications - The power electronics load is supposed to be a set of predefined harmonic sources, obtained by time simulation + FFT before the optimisation process. Practical implications - The frequency model allows for the rapid designing and comparing of several structures or modelling hypothesis with regard to the parasitic elements and circuit imperfections. Originality/value - The frequency model is automatically generated, and sizing criteria on the component (e.g. inductors, capacitor) can be added in an analytical form, for example, to deal with volume or mass criteria.
机译:目的-电磁兼容性(EMC)滤波器的频率仿真和优化通常很耗时。本文的目的是提出一种用于电力电子结构的轻松,快速建模和优化的方法。设计/方法/方法-本文提出了一种用于电力电子结构的轻松,快速建模和优化的方法。它着重于EMC滤波器设计。为了实现此任务时间仿真,将FFT和自动频率建模相结合。结果-提出了一种自动频率建模方法,该方法还可以自动给出模型梯度。因此,该模型可用于优化EMC滤波器,但也有助于选择其拓扑。使用和比较了几种优化算法。研究的局限性/意义-电力电子负载应该是一组预定义的谐波源,在优化过程之前通过时间仿真+ FFT获得。实际意义-频率模型允许针对寄生元件和电路缺陷快速设计和比较几种结构或建模假设。原创性/价值-频率模型是自动生成的,并且可以以分析形式添加组件(例如电感器,电容器)的尺寸标准,例如处理体积或质量标准。

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