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Optimization Design of the Planar Switched Reluctance Motor on Electromagnetic Force Ripple Minimization

机译:平面开关磁阻电动机的电磁力纹波最小化优化设计

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摘要

In planar switched reluctance motors (PSRMs), the electromagnetic force ripple minimization is important to reduce the noise and vibration for high-precision motions. In this paper, an improved PSRM by optimization design for minimization of the electromagnetic force ripple is proposed. The structure, principle, and mathematical model of the PSRM are clarified. Based on Ansoft Maxwell, optimization design of the PSRM is performed by improved structure with smaller pole pitch and incremental number of mover poles. Experiments of the improved PSRM are implemented based on dSPACE. The experimental results verify that the improved PSRM effectively reduces electromagnetic force ripple with planar trajectory tracking.
机译:在平面开关磁阻电机(PSRM)中,最小化电磁力波动对于降低高精度运动的噪声和振动非常重要。本文提出了一种通过优化设计改进的PSRM,以最大程度地减小电磁力波动。阐明了PSRM的结构,原理和数学模型。基于Ansoft Maxwell,PSRM的优化设计是通过改进结构来实现的,该结构具有更小的磁极节距和更多的动子极数。改进的PSRM实验是基于dSPACE进行的。实验结果证明,改进的PSRM通过平面轨迹跟踪有效地减小了电磁力波动。

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