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Analytical methods for minimizing detent force in long-stator PM linear motor including longitudinal end effects

机译:最大限度地减少长定子PM线性电动机施工力的分析方法,包括纵向效应

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The end effect of detent force is inherent characteristic of permanent magnet (PM) linear motors. The detent force in long-stator linear motor is caused by open longitudinal ends of PM mover, which differs from rotary motor and its short-stator counterparts. The open longitudinal ends of PM mover in long-stator linear motor cause uneven airgap magnetic flux distribution. Further, the distorted flux distributions have influence on the waveforms of detent force. So the detent force cannot be predicted accurately by conventional analytical method [1], and the utility of optimized methods need to be reconsidered for non-symmetric distributions [2].
机译:制动力的最终效果是永磁体(PM)线性电动机的固有特性。长定子线性电动机中的制动力是由PM动器的开口纵向端引起的,这与旋转电动机及其短定子对应物不同。长定子线性电动机中PM动器的开放纵向端导致气凝伤磁通量分布不均匀。此外,扭曲的助焊剂分布对制动力的波形有影响。因此,通过常规分析方法[1]不能准确地预测制动力[1],并且需要对非对称分布进行重新考虑优化方法的效用[2]。

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