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Experimental study of low speed sensorless control of PMSM drive using high frequency signal injection

机译:高频信号注入永磁同步电机低速无传感器控制的实验研究。

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摘要

AbstractConventional techniques for sensorless control of permanent magnet synchronous motor drive (PMSM), which requires information on rotor position, are reviewed, and recent developments in this area are introduced in this paper along with their inherent advantages and drawbacks. The paper presents an improved method for sensorless speed control of PMSM drive with emphasis placed on signal injection method. This signal injection method examines the control performance of sensorless PMSM drive by injecting signal externally and thereby sensing the rotor position. The main objective of this drive system is to have speed control at standstill and low speed regions. Several tests are carried out to demonstrate the ability of proposed models at different operating conditions with the help of simulation results in Matlab/Simulink environment. Simulation results confirm that the proposed sensorless control approach of PMSM can achieve high performance at standstill and low speeds but not at very high speeds. An experimental setup is implemented using a 1HP surface mounted (SM) PMSM and DsPICDEM^TM MCHV-2 development board, to check the validity of simulation results
机译:摘要综述了需要有关转子位置信息的永磁同步电动机驱动器(PMSM)的无传感器控制的常规技术,并介绍了该领域的最新发展及其固有的优缺点。本文提出了一种改进的PMSM驱动器无传感器速度控制方法,重点是信号注入方法。这种信号注入方法通过从外部注入信号并检测转子位置来检查无传感器PMSM驱动器的控制性能。该驱动系统的主要目标是在静止和低速区域进行速度控制。借助Matlab / Simulink环境中的仿真结果,进行了一些测试来证明所建议模型在不同操作条件下的能力。仿真结果证实,所提出的PMSM无传感器控制方法可以在静止和低速下实现高性能,但不能在很高的速度下实现。使用1HP表面贴装(SM)PMSM和DsPICDEM ^ TM MCHV-2开发板实施实验设置,以检查仿真结果的有效性

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