EM simulation of planar bus bars in multi-level power converters

D. Cottet, I. Stevanovic, B. Wunsch, D. Daroui, J. Ekman, G. Antonini
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引用次数: 6

Abstract

This paper presents recent progress in the acceleration of PEEC based electromagnetic simulations and its impact on the design of complex bus bar structures as used in multilevel power converters. The approach presented consists of different dedicated acceleration methods for the different design tasks. The first acceleration technique applied is the so called reluctance matrix method for full 3D field results, reducing memory consumption by orders of magnitude and computing time by a factor 3 to 5. The second acceleration method applied is based on model order reduction techniques for port-to-port impedance extraction, reducing the computation time by about one order of magnitude and allowing wideband macro modeling for system level simulations. The paper focuses on the application of these methods showing the impact on practical bus bar design tasks.
多级电源变换器中平面母线的电磁仿真
本文介绍了基于PEEC的电磁仿真加速的最新进展及其对多电平电源变换器中复杂母线结构设计的影响。针对不同的设计任务,提出了不同的专用加速方法。第一个应用的加速技术是所谓的磁阻矩阵法,用于全3D现场结果,将内存消耗减少了几个数量级,计算时间减少了3到5倍。第二种应用的加速方法是基于端口到端口阻抗提取的模型降阶技术,将计算时间减少了大约一个数量级,并允许宽带宏观建模用于系统级仿真。本文着重介绍了这些方法在实际母线设计任务中的应用。
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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