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Semi-Implicit Steepest Descent Method for Energy Minimization and Its Application to Micromagnetic Simulation of Permanent Magnets

机译:能量最小化的半隐式最速下降方法及其在永磁体微磁仿真中的应用

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摘要

We report an acceleration method for evaluating the coercivity and the – curve of a magnetic material based on micromagnetic simulation. To avoid stability constraint of explicit schemes, we examine a semi-implicit integration for the steepest descent method to find the local minimum state. The present method is applied to simulate a magnetization reversal process in the simplified microstructure of permanent magnets, and a major improvement of calculation speed is achieved to simulate the – curve of permanent magnets correctly.
机译:我们报告了一种基于微磁模拟的加速方法,用于评估磁性材料的矫顽力和–曲线。为了避免显式方案的稳定性约束,我们针对最速下降法检查半隐式积分,以找到局部最小状态。将本方法应用于简化的永磁体微观结构中的磁化反转过程,并正确计算了永磁体的–曲线,大大提高了计算速度。

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