减小转矩波动的同步磁阻电机矢量控制

H. Heidari, A. Rassõlkin, A. Kallaste, T. Vaimann, E. Andriushchenko
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引用次数: 3

摘要

同步磁阻电机(SynRM)的直接转矩控制(DTC)相关的高转矩脉动已经成为高性能应用中的严峻挑战。针对矢量控制的SynRM驱动系统,提出了一种改进的转矩脉动抑制方法。采用开关式直流电机控制电机。该方法利用同步参考系中的解耦电流,为开关表生成一组更精确的输入。此外,有效电压施加时间进行调节,以避免高转矩波动。该方法通过简单地使用不同输入的磁滞控制器和开关表,降低了SynRM的高转矩波动。避免了脉宽调制算法,减少了控制的计算量。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vector Control Of Synchronous Reluctance Motor With Reduced Torque Ripples
High torque ripples associated with direct torque control (DTC) of synchronous reluctance motor (SynRM) have become a severe challenge in high-performance applications. This paper proposes a modified method to suppress the torque ripple for a vector controlled SynRM drive system. The switching-table based DTC is opted to control the motor. The method exploits the decoupled currents in the synchronous reference frame in order to generate a more accurate set of inputs for the switching table. In addition, the active voltage application time is regulated to avoid high torque ripples. The method reduced the high torque ripples of the SynRM by simply using hysteresis controllers and switching table with different inputs. Moreover, the pulse-width modulation algorithm is avoided, resulting in less computation burden of the control. The simulation results are carried out and the performance of the method is validated.
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