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Boundary-Free Analytic Magnetic Field Calculations Including Soft Iron and Permanent Magnets Using an Iterative Discretization Technique

机译:不使用迭代离散化技术的无源铁和永磁体的无界面分析磁场计算

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摘要

An extremely fast magnetostatic magnetic field modeling method is developed that includes nonlinear relative permeabilities (or “magnetic saturation”) of soft magnetic materials with nonuniform magnetization. The model assumes regions of linearity within the material in order to apply analytic equations and superposition. This article presents the general theory and method for 3-D geometries, along with a 2-D axisymmetric example case study that is of interest for tubular linear actuator (or motor) design. The case study maximizes the average air-gap flux of an axially magnetized pole piece and shows a close correlation of the internal and external magnetic flux densities with a finite element analysis. This demonstrates the method as suitable for large parametric searches of topologies, toward the optimization of electrical machines, linear actuators, transformers, or more general 3-D electromagnetic problems.
机译:开发出极快的磁场造型方法,其包括具有非均匀磁化的软磁材料的非线性相对渗透率(或“磁饱和度”)。该模型假设材料内的线性区域,以施加分析方程和叠加。本文介绍了3-D几何形状的一般理论和方法,以及2-D轴对称示例性案例研究,其对管状线性执行器(或电动机)设计感兴趣。案例研究最大化了轴向磁化的极件的平均气隙通量,并且显示了内部和外部磁通密度具有有限元分析的紧密相关性。这证明了适用于大型参数化拓扑搜索的方法,朝向优化电机,线性致动器,变压器或更一般的3-D电磁问题。

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