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Influence of Stator Design on the Thrust Force Performance of Double Sided Linear Permanent Magnet Flux Switching Machine

机译:定子设计对双面线性永磁式磁通切换机推力性能的影响

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Manufacturing cost of Double Sided Linear Permanent Magnet Flux Switching Machine (DSLPMFSM) suitable for long stroke applications can be reduced by optimizing secondary (stator) of the machine. In this paper, stator pole study of novel DSLPMFSM with mover slots and stator poles ratio of Ns⁄Np = 12⁄10, 12⁄14,12⁄34,and12⁄38 is done. Based on 2D Finite Element (FE) Analysis results, DSLPMFSM with Ns⁄Np = 12⁄14 is selected due to high flux linkage, and high thrust force. Initial design of 12/14 DSLPMFSM suffers with significant detent force and degrade machine performance by introducing periodic thrust force ripples. Asynchronous distribution of stator tooth (ADST) technique is utilized and detent force problem is effectively rectified. Furthermore, stator of 12/14 DSLPMFSM is optimized by deterministic optimization approach by defining variables for tooth width, shape, and height. Finally, two types of grooves (triangular and rectangular) are introduced, and optimized to decrease stator volume and thrust force ripples. Introduction of ADST technique and two fold optimization increased average thrust force up to 103.25% as compared to initial design, while thrust force ripple ratio is reduced from 52% to 25%.
机译:通过优化机器的次级(定子),可以降低适用于长行程应用的双面线性永磁式磁通开关机(DSLPMFSM)的制造成本。本文研究了具有动子槽和定子磁极比为N的新型DSLPMFSM的定子磁极研究 s ⁄N p = 12⁄10、12⁄14、12⁄34和12⁄38完成。根据2D有限元(FE)分析结果,DSLPMFSM具有N s ⁄N p 由于高磁链和高推力,选择= 12⁄14。 12/14 DSLPMFSM的初始设计具有很大的制动力,并且会由于引入周期性的推力波动而降低机器性能。利用了定子齿的异步分布(ADST)技术,有效地解决了棘爪力问题。此外,通过确定性优化方法,通过定义齿的宽度,形状和高度的变量,对12/14 DSLPMFSM的定子进行了优化。最后,介绍了两种类型的凹槽(三角形和矩形),并对其进行了优化以减小定子体积和推力波动。与初始设计相比,ADST技术的引入和双重优化使平均推力提高了103.25%,而推力波动比从52%降低到25%。

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