Direct torque control of permanent magnet synchronous motor for electric vehicles

Barış Çavuş, M. Aktas
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引用次数: 1

Abstract

Permanent magnet synchronous motors (PMSM) are highly preferred in electric vehicles due to their high efficiency, good torque-speed characteristics, simple structure and long life. In this paper, the simulation study of direct torque controlled PMSM for electric vehicles was performed in MATLAB by direct torque control (DTC) method using different speed control and speed estimation methods, because output parameters of DTC method such as torque and current, have high ripple, and this ripple should be reduced for electric vehicle. Due to the simple structure of the DTC and its low dependence on the system parameters, it is widely used in alternative current motors. When DTC is used in PMSM drive, it is known that although it has fast dynamic response when it is compared to other vector control methods, the ripple in the torque and flux increases. In this study, direct torque controlled PMSM is tried to be minimized by using different speed control methods and speed estimation methods. For this purpose, proportional-integral (PI), fuzzy logic and sliding mode speed controller are used as speed controllers and their performances are compared. In addition, speed sensor less direct torque control of PMSM was performed by using sliding mode observer and model reference adaptive system (MRAS) observer. As a result of the simulation studies, it was found that sliding mode speed control method provides less ripples in the torque, better speed control and less energy consumption. Furthermore, as a speed observer, the sliding observer gives better results in speed estimation and provides less energy consumption.
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电动汽车用永磁同步电机的直接转矩控制
永磁同步电机以其效率高、转矩-转速特性好、结构简单、使用寿命长等优点,在电动汽车中得到广泛应用。本文采用直接转矩控制(direct torque control, DTC)方法,采用不同的速度控制和速度估计方法,在MATLAB中对电动汽车用直接转矩控制PMSM进行了仿真研究,因为直接转矩控制(direct torque control, DTC)方法输出的转矩和电流等参数存在较大的纹波,而在电动汽车上需要减小这种纹波。由于直接转矩控制结构简单,对系统参数的依赖性低,在交流电机中得到了广泛的应用。当直接转矩控制应用于永磁同步电机驱动时,虽然与其他矢量控制方法相比,它具有快速的动态响应,但转矩和磁链的脉动增大。在本研究中,通过采用不同的速度控制方法和速度估计方法,试图使直接转矩控制的永磁同步电机达到最小。为此,采用比例积分(PI)、模糊逻辑和滑模速度控制器作为速度控制器,并比较了它们的性能。此外,采用滑模观测器和模型参考自适应系统(MRAS)观测器对永磁同步电机进行了无速度传感器直接转矩控制。仿真研究表明,滑模速度控制方法的转矩波动较小,速度控制效果较好,能耗较低。此外,作为速度观测器,滑动观测器的速度估计效果更好,能量消耗更少。
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