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Magnetising fixture design for optimal magnetisation orientation of ring-type magnet in surface-mounted permanent magnet motor

机译:磁化夹具设计可实现表面安装式永磁电动机中环形磁体的最佳磁化方向

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摘要

This study presents a design method to obtain an innovative structural design of a magnetising fixture that can achieve a target magnetisation orientation for a ring-type magnet of a surface-mounted permanent magnet (SPM) motor. The optimisation problem is formulated to minimise the integrated value of the difference between the magnetic flux distribution, produced by the input current of the magnetising fixture, and the target orientation that improves the torque performance of SPM motor. Two level set functions are employed to express both the structural boundaries and the material properties of the ferromagnetic material and coil comprising the magnetising fixture. The optimal shape of the fixture is obtained by using an adjoint design sensitivity and a time evolution equation for each level set function. To confirm the effectiveness of the proposed method, it is applied to a magnetisation problem for an 8-pole 12-slot SPM motor designed for a battery cooling system in a hybrid electric vehicle.
机译:这项研究提出了一种设计方法,以获得磁化夹具的创新结构设计,该结构可以实现表面安装式永磁(SPM)电动机的环形磁体的目标磁化方向。提出了优化问题,以最小化由磁化夹具的输入电流产生的磁通量分布与目标方位之间的差异的积分值,该目标方位改善了SPM电动机的转矩性能。采用两个水平集函数来表示包括磁化固定装置的铁磁材料和线圈的结构边界和材料特性。夹具的最佳形状是通过使用伴随的设计灵敏度和每个水平集函数的时间演化方程式获得的。为了确认所提出方法的有效性,将其应用于为混合动力电动汽车中的电池冷却系统设计的8极12槽SPM电动机的磁化问题。

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