Copper Loss Reduction of Torque Sharing Function in Switched Reluctance Motor by Division of Commutation Region

Jiayi Fan, Yongkeun Lee
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Abstract

Torque sharing function (TSF) method is widely used in switched reluctance motor (SRM) drive to reduce the torque ripple. Besides maintaining the torque control performance, the copper loss reduction should also be considered while determining the TSF profiles. In this paper, an improved TSF method modified from the previous method recently done by the other research group is proposed focusing on the optimal allocation of torque component in the commutation phases and reduction of copper loss. Based on the torque generating nature of SRM, the commutation region is suggested to be divided into two regions where the incoming phase and outgoing phase have different torque generating capacity. The commutation phase with higher rate of change of inductance with respect to the rotor position is preferred to mainly contribute to the torque production while the other phase is penalized to have reduced current. Thus, the total copper loss can be reduced. Simulation is carried out in MATLAB/Simulink environment and the simulation results show that the modified TSF with region division has a lower copper loss compared to the previous method done by the other research group.
通过划分换相区降低开关磁阻电机转矩共享功能的铜损耗
转矩共享函数法(TSF)广泛应用于开关磁阻电机(SRM)驱动中,以减小转矩脉动。在确定TSF曲线时,除了保持转矩控制性能外,还应考虑降低铜损耗。本文在前人方法的基础上,提出了一种改进的TSF方法,重点关注换相转矩分量的优化分配和铜损耗的降低。根据SRM产生转矩的特性,建议将换向区划分为输入相和输出相产生转矩能力不同的两个区域。相对于转子位置电感变化率较高的换向相优先用于产生转矩,而另一相则因电流减小而受到惩罚。因此,总铜损失可以减少。在MATLAB/Simulink环境下进行了仿真,仿真结果表明,与其他课题组先前的方法相比,改进的带区域划分的TSF具有更低的铜损耗。
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