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Comparative study of conventional DTC and DTC_S VM based control of PMSM motor - Simulation and experimental results

机译:基于传统DTC和DTC_S VM的PMSM电机控制的比较研究-仿真和实验结果

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In the conventional direct torque control (DTC) of a permanent magnet synchronous motor (PMSM), hysteresis controllers are used to choose the proper voltage vector resulting in large torque ripples, and the inverse voltage vector, employed in this system instead of the zero voltage vectors used in an induction motor, can accelerate the torque response but enlarges the torque ripples at the same time. To ameliorate the steady state effectiveness of the PMSM DTC system a SVM scheme is introduced in this paper. In the direct torque, control scheme using space vector modulation (DTC-SVM) for permanent magnet synchronous motor. The study of PMSM shows that the increase of electromagnetic torque is related to the increase of the angle between the stator and rotor flux linkages and therefore swift torque response can be obtained by increasing the rotating speed of the stator flux linkage as fast as possible. This paper presents a simulation and a practical implementation for the conventional DTC and the DTC-SVM based control of the PMSM, using a dSPACE-1104. To confirm the efficacy of the proposed technique, simulation and experimental results are presented. Besides, the system associated with these techniques can effectively decrease flux and torque ripples with better dynamic and steady performance. The results with the SVM technique show more performances than the results with the conventional DTC. (C) 2018 International Association for Mathematics and Computers in Simulation (IMACS). Published by Elsevier B.V. All rights reserved.
机译:在永磁同步电动机(PMSM)的常规直接转矩控制(DTC)中,磁滞控制器用于选择导致大转矩波动的适当电压矢量,以及在该系统中使用的反向电压矢量,而不是零电压。感应电动机中使用的矢量可以加速转矩响应,但同时会增大转矩波动。为了改善PMSM DTC系统的稳态有效性,本文引入了一种SVM方案。在直接转矩中,永磁同步电动机使用空间矢量调制(DTC-SVM)的控制方案。 PMSM的研究表明,电磁转矩的增加与定子和转子磁链之间的夹角的增加有关,因此,通过尽可能快地提高定子磁链的转速可以获得快速的转矩响应。本文介绍了使用dSPACE-1104对传统DTC和基于DTC-SVM的PMSM控制的仿真和实际实现。为了确认所提出技术的有效性,提出了仿真和实验结果。此外,与这些技术相关的系统可以有效地减少磁通和转矩波动,并具有更好的动态和稳定性能。 SVM技术的结果显示出比常规DTC更高的性能。 (C)2018国际模拟数学与计算机协会(IMACS)。由Elsevier B.V.发布。保留所有权利。

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