Stator Phase Resistance Trade-off Between Output Torque and Braking Torque of PMSM

Fan Zhang, Bing Song, Shushu Zhu, Yaohua Hu, Chuang Liu
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Abstract

In this paper, the braking torque of the surface mounted permanent magnet (SPM) motor for the electric sliding plug door (ESPD) system of the rail transport is studied. When the three-phase armature coils are short- circuited, the braking torque should be small to ensure passengers can open the door by themselves. The relationship between the impedance of the three-phase armature coils and the braking torque is deduced. The variation law of motor stator phase resistance and braking torque is obtained. The output torque and braking torque of motor with different stator phase resistance is compared. The model of the motor is built. A prototype of 12-slot/10-pole surface mounted permanent magnet synchronous (SPM) motor is designed and manufactured. The results of the experiment agree well with the theoretical and FE-simulation results.
永磁同步电机输出转矩与制动转矩的定子相阻权衡
本文对轨道交通电动滑塞门(ESPD)系统用表面贴装永磁(SPM)电机的制动力矩进行了研究。当三相电枢线圈短路时,制动力矩应小,以保证乘客能自行开门。推导了三相电枢线圈阻抗与制动转矩的关系。得到了电机定子相电阻和制动转矩的变化规律。比较了不同定子相阻时电机的输出转矩和制动转矩。建立了电机的模型。设计并制造了一种12槽/10极表面贴装永磁同步电机样机。实验结果与理论和有限元模拟结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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