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A high performance position sensorless Surface Permanent Magnet Synchronous Motor drive based on flux angle

机译:基于磁通角的高性能位置无传感器表面永磁同步电动机驱动

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A position sensorless Surface Permanent Magnet Synchronous Motor (SPMSM) drive based on flux angle is presented in this paper. The motor equations are written in rotor fixed d-q reference frame. A PID controller is used to process the speed error to generate the reference torque current keeping the magnetizing current fixed. The estimated stator flux using Recurrent Neural Network (RNN) is used to find out the rotor position. The flux angle and the reference current phasor angle are used in vector rotator to generate the reference phase currents. Hysteresis current controller block controls the switching of the 3-phase inverter to apply voltage to the motor stator. Simulation studies on different operating conditions indicate the acceptability of the drive system. The drive system only requires a speed transducer and is free from position sensor requirement. The proposed control scheme is robust under load torque disturbances and motor parameter variations. It is also simple and low cost to implement in a practical environment.
机译:本文提出了一种基于通量角的位置无传感器表面永磁同步电动机(SPMSM)驱动。电动机方程用转子固定D-Q参考帧写入。 PID控制器用于处理速度误差以产生保持磁化电流的参考扭矩电流。使用经常性神经网络(RNN)的估计定子通量用于找出转子位置。磁通角和参考电流量相角用于矢量旋转器以产生参考相电流。滞后电流控制器块控制三相逆变器的切换,将电压施加到电机定子。不同操作条件的仿真研究表明了驱动系统的可接受性。驱动系统仅需要速度传感器,并且没有位置传感器要求。所提出的控制方案在负载扭矩干扰和电机参数变化下是稳健的。在实际环境中实施它也是简单且低成本的成本。

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