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Calculation of Active Material’s Torque Contributions for a Flux Switching Machine

机译:助焊剂开关机的活性材料扭矩贡献的计算

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摘要

A new calculation method for the torque contribution of an arbitrary point or element in an electric machine's geometry is developed. The local torque contributions (LTCs) and their visualizations provide insights into the iron utilization and possible machine geometry improvements. The flux tubes created from the magnetic vector potential's equipotential lines are interpreted as a set of local magnetic circuits (LMCs). Each LMC that crosses the air gap contributes to the machine's torque, which is quantifiable by applying the Maxwell stress tensor to the LMC's air-gap intersections. The torque contributions are mapped to all finite elements belonging to each LMC, for each transient calculation's rotor step. Furthermore, the torque contribution data are briefly discussed and a harmonic analysis is performed, focusing on the mean and ripple components of the torque. Finally, a brief example of a topological optimization with the calculated torque contributions as optimization criteria is presented and evaluated.
机译:开发了一种新的计算方法,用于计算电机几何中任意点或元素的转矩贡献。局部扭矩贡献(LTC)及其可视化提供了对铁利用率和可能的机器几何形状改进的见解。由磁矢量势的等势线创建的通量管被解释为一组局部磁路(LMC)。每个穿过气隙的LMC都会影响机器的扭矩,可通过在LMC的气隙交叉处施加麦克斯韦应力张量来量化该扭矩。对于每个瞬态计算的转子步长,转矩贡献都映射到属于每个LMC的所有有限元。此外,简要讨论了扭矩贡献数据并进行了谐波分析,重点是扭矩的平均值和波动分量。最后,给出并评估了以计算出的转矩贡献作为优化标准的拓扑优化的简短示例。

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