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Analysis of double-sided sandwiched linear flux-switching permanent-magnet machines with staggered stator teeth for urban rail transit

机译:城轨交通中定子齿交错的双面夹心式线性磁通切换永磁电机的分析

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摘要

Linear flux-switching permanent-magnet (LFSPM) machines exhibit significant potential in many applications. A double-sided sandwiched LFSPM (DSSLFSPM) machine with high thrust force capability is investigated in this study. After being optimised for optimal thrust force using Maxwell 2D, this machine is found to deliver higher thrust force when compared with an optimised conventional 12/14 LFSPM machine. However, low thrust force ripple is also required in many applications. Thus, in order to reduce the thrust force ripple, the DSSLFSPM machine is improved by a staggered stator teeth structure and an end permanent-magnets method, then, two improved machines are obtained. The improved machines can reduce the thrust ripple to a very low level without thrust force density decrease. Further, the stator yoke thickness of the improved machines is optimised to reach optimal thrust force density. Finally, the performance of the DSSLFSPM-ST machines is analysed including the normal force, the efficiency and the power factor. It shows that the improved DSSLFSPM machines exhibit relatively low normal force and high thrust force density as well as low thrust ripples, indicating that they are suitable for long-stroke applications.
机译:线性磁通量开关永磁(LFSPM)机器在许多应用中都具有巨大的潜力。本研究研究了具有高推力能力的双面夹心LFSPM(DSSLFSPM)机器。在使用Maxwell 2D对最佳推力进行了优化之后,与经过优化的传统12/14 LFSPM机器相比,该机器可提供更高的推力。但是,在许多应用中也需要低推力波动。因此,为了减小推力波动,通过交错的定子齿结构和端部永磁方法改进了DSSLFSPM机器,然后获得了两种改进的机器。改进的机器可以将推力波动减小到非常低的水平,而不会降低推力密度。此外,优化了改进机器的定子轭厚度,以达到最佳推力密度。最后,分析了DSSLFSPM-ST机器的性能,包括法向力,效率和功率因数。结果表明,改进的DSSLFSPM机器显示出较低的法向力和较高的推力密度以及较低的推力波动,表明它们适用于长行程应用。

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