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Simulation of Electromagnetic Force Between Pulsed Inductor and Internal Structure of Power Supply Module

机译:脉冲电感与电源模块内部结构之间电磁力的仿真

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摘要

With the development of electromagnetic launch (EML) technology, the pulsed power supply (PPS) module applied in EML needs to be smaller, lighter, and more compact. Electromagnetic force (EMF) is one of the most serious problems when PPS module works with high current. In this paper, we study the PPS module used in EML technology. The pulsed inductor model is built based on structure characteristics. The distribution of current density in the inductor during discharge is analyzed. The finite element analysis software is used to simulate and analyze the characteristics of the induction current and the EMF. The simulation model is composed of inductor and metals structures. The EMF laws are put forward by simulation of different shaped metals at different positions. By analyzing the distribution of the eddy current and EMF on the metal conductors at different positions, the EMF laws between the inductor and metal conductors in PPS module are presented in this paper.
机译:随着电磁发射(EML)技术的发展,EML中应用的脉冲电源(PPS)模块需要更小,更轻和更紧凑。当PPS模块在大电流下工作时,电磁力(EMF)是最严重的问题之一。在本文中,我们研究了EML技术中使用的PPS模块。脉冲电感器模型是基于结构特征构建的。分析了放电期间电感器中电流密度的分布。有限元分析软件用于模拟和分析感应电流和电动势的特征。仿真模型由电感器和金属结构组成。通过模拟不同位置的不同形状金属,提出了电磁场定律。通过分析不同位置金属导体上的涡流和电动势分布,提出了PPS模块中电感与金属导体之间的电动势规律。

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