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Improved Electromagnetic Device Design By Combining Air Gap Decomposition With Nonlinear Flux Density Mapping

机译:气隙分解与非线性磁通密度映射相结合的改进电磁装置设计

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摘要

Several methods exist which allow for the modeling of electromagnetic devices. Each method represents varying qualities of speed and accuracy of computation. This paper examines the effectiveness of a 2D lumped parameter magnetic circuit modeler based on Roters' Method of air gap decomposition. It utilizes nonlinear flux density mapping for steel components to correctly model the effects of saturation. This method is highly accurate and fast for predicting coenergy levels within an electromagnetic device and the corresponding steady state force output.
机译:存在几种允许对电磁设备建模的方法。每种方法都代表了变化的速度和计算精度。本文研究了基于Roters气隙分解方法的二维集总参数磁路建模器的有效性。它利用钢部件的非线性磁通密度映射来正确模拟饱和度的影响。该方法高度准确且快速,可用于预测电磁设备内的协同能级以及相应的稳态力输出。

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