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3-D Electromagnetic Modeling of EMI Input Filters

机译:EMI输入滤波器的3D电磁建模

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摘要

In this paper, a novel 3-D electromagnetic modeling approach which enables electromagnetic compatibility (EMC) analysis of power converter systems in an accurate and computationally efficient way is presented. The 3-D electromagnetic modeling approach, implemented in the EMC simulation tool GeckoEMC, is based on two numerical techniques, the partial element equivalent circuit method and the boundary integral method (PEEC–BIM). The developed PEEC–BIM coupled method enables comprehensive EMC analysis taking into account different effects of the PCB layout, self-parasitics, mutual coupling, shielding, etc., which in turn provides a detailed insight into the electromagnetic behavior of power electronic systems in advance to the implementation of hardware prototypes. The modeling features of the GeckoEMC simulation tool for virtual design of electromagnetic interference (EMI) filters and power converters is demonstrated on the examples of a single-phase two-stage EMI filter and a practical EMI filter for a single-phase PFC input stage. Good agreement between the PEEC–BIM simulation and the small signal transfer function measurement results is achieved over a wide frequency range, from dc up to 30 MHz. The EMC simulation environment enables a step-by-step EMC analysis distinguishing the impact of various electromagnetic effects on the EMI filter performance and allowing an optimal EMI filter design.
机译:在本文中,提出了一种新颖的3-D电磁建模方法,该方法能够以准确且计算高效的方式对功率转换器系统进行电磁兼容性(EMC)分析。在EMC仿真工具GeckoEMC中实施的3-D电磁建模方法基于两种数值技术,即部分元件等效电路法和边界积分法(PEEC–BIM)。发达的PEEC–BIM耦合方法可以综合考虑PCB布局,自寄生,互耦合,屏蔽等的不同影响,进行全面的EMC分析,从而提前详细了解电力电子系统的电磁性能实施硬件原型。在单相两级EMI滤波器和用于单相PFC输入级的实用EMI滤波器的示例中,演示了用于虚拟设计电磁干扰(EMI)滤波器和功率转换器的GeckoEMC仿真工具的建模功能。 PEEC–BIM仿真与小信号传递函数测量结果之间的良好一致性在从直流到30 MHz的宽频率范围内均能实现。通过EMC仿真环境,可以逐步进行EMC分析,以区分各种电磁效应对EMI滤波器性能的影响,并实现最佳EMI滤波器设计。

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