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Development of a position sensorless control system on an electric vehicle driven by a permanent magnet synchronous motor

机译:永磁同步电动机驱动的电动汽车上无位置传感器控制系统的开发

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This paper presents a new position sensorless control system of an interior permanent magnet synchronous motor (IPMSM) for electric vehicles. The proposed control system is based on an injected voltage vector that is synchronized with a PWM carrier of an inverter. The pole position is estimated from the relation between the injected voltage vector and the saliency of the rotor. The first current difference vector is detected when the injected voltage vector in the estimated pole position direction is added to the motor control voltage vector. Next, the second current difference vector is detected when the injected voltage vector in the opposite direction of the estimated pole position is added to the same motor control voltage vector. Then, the pole position of the rotor with anti-saliency can be estimated from the first and second current difference vectors. This control needs neither motor parameters nor band pass filters. The anti-salient pole type IPMSM can be operated over a wide speed range including zero speed, with a quick response. Good driving of electric vehicles is realized using the proposed system.
机译:本文提出了一种用于电动汽车的内部永磁同步电动机(IPMSM)的新型无位置传感器控制系统。所提出的控制系统基于与逆变器的PWM载波同步的注入电压矢量。根据注入的电压矢量和转子的凸度之间的关系来估算磁极位置。当在估计的磁极位置方向上注入的电压矢量与电机控制电压矢量相加时,将检测到第一电流差矢量。接下来,当将与估计的磁极位置相反的方向上的注入电压矢量添加到相同的电动机控制电压矢量时,检测到第二电流差矢量。然后,可以从第一和第二电流差矢量估计具有反凸性的转子的磁极位置。该控制既不需要电动机参数,也不需要带通滤波器。防凸极型IPMSM可以在包括零速在内的较宽速度范围内运行,并具有快速响应。使用所提出的系统实现了电动车辆的良好驾驶。

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