基于方波注入的同步磁阻电机启动研究

Dengke Li
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引用次数: 1

摘要

对于同步磁阻电机的无位置传感器矢量控制,其起动性能直接影响中高速时的控制效果。为了提高整体控制效果,必须提高启动性能。本文对同步磁阻电动机的起动效果进行了研究和改进。利用同步磁阻电机转子结构的凸极特性,本文采用的方法是高频方波注入法。通过注入高频方波电压信号,从高频响应电流中获取转子位置信息。该方法能准确估计同步磁阻电机在零、低速时的转子位置,实现同步磁阻电机的可靠起动。仿真结果表明,该方法提高了同步磁阻电机的启动效果,验证了控制算法的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Startup of Synchronous Reluctance Motor Based on Square Wave Injection
For the position sensorless vector control of synchronous reluctance motor, the starting performance affects the control effect at medium and high speed. In order to improve the overall control effect, it is necessary to improve the starting performance. This paper studies and improves the starting effect of synchronous reluctance motor. Taking advantage of the salient pole characteristics of the synchronous reluctance motor rotor structure, the method used in this paper is the high frequency square wave injection method. By injecting a high frequency square wave voltage signal, the rotor position information is obtained from the high frequency response current. The method can accurately estimate the rotor position at zero and low speed, and realize the reliable starting of the synchronous reluctance motor. The simulation results show that the method improves the startup effect of the synchronous reluctance motor and verifies the correctness of the control algorithm.
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