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An integral method combining V/Hz and vector control of permanent magnet motor

机译:v / Hz与永磁电动机V / Hz和矢量控制的积分方法

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This paper presents an original method for sensorless speed control of Permanent Magnet Motors (PMM). The proposed method is robust to parameter variations, does not require a starting sequence and shows good performance at low and high speeds operation. The benefits mentioned above are achieved by combining features of volts per hertz and vector control methods. The proposed method uses the q axis current regulator to estimate the angular speed of the PMM instead of providing the q axis voltage command for the inverter as is done in traditional motor control methods. The q axis voltage inverter command is calculated from q axis and d axis current references and motor parameters similar to V/Hz control method. An observer performs the estimation of q and d axis rotor fluxes, from measured and reference currents and voltages. The observer estimates are crucial for flux and consequently voltage estimation and robust operation of the method. In addition, the d axis current regulator performance is enhanced, with a feed-forward voltage signal calculated from motor parameters. The analysis presented in this paper, shows that error in the alignment with rotor flux position is proportional to the estimated rotor flux in q axis which was consequently used for rotor angle alignment.
机译:本文介绍了永磁电动机无传感器速度控制的原始方法(PMM)。所提出的方法对参数变化具有鲁棒,不需要启动序列并在低速和高速操作下显示出良好的性能。通过组合每赫兹和载体控制方法的特征来实现上述益处。所提出的方法使用Q轴电流调节器来估计PMM的角速度,而不是在传统电机控制方法中完成逆变器的Q轴电压指令。 Q轴电压逆变器命令由Q轴和D轴电流参考和电机参数计算,类似于V / Hz控制方法。观察者执行测量和参考电流和电压的Q和D轴转子通量的估计。观察者估计对于助焊剂至关重要,因此该方法的电压估计和鲁棒操作。此外,D轴电流调节器性能增强,具有从电动机参数计算的前馈电压信号。本文呈现的分析,示出了与转子通量位置的对准中的误差与Q轴的估计转子通量成比例,从而用于转子角度对准。

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