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Stator resistance tuning in a stator-flux field-oriented drive using an instantaneous hybrid flux estimator

机译:使用瞬时混合磁通估算器的定子磁通磁场定向驱动器中的定子电阻调谐

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A self-tuning control scheme for stator-flux field-oriented induction machine drives in electric vehicles operating over a wide speed range is discussed in this paper. The stator flux can be determined accurately from the terminal voltage when the machine is operating at high speed. However, at low speed, the stator resistance must be known to calculate the stator flux. The problem of calculating the stator flux accurately over the entire speed range is addressed. The rotor flux can be found from the machine speed and rotor time constant. The stator flux, at low speed, is then calculated directly from the rotor flux. By alternating between these two methods of determining the stator flux, a self-tuning operation is achieved, wherein the stator and rotor resistances are periodically updated. Since both methods of determining the stator flux are forced to track one another, a smooth transition between flux estimators is obtained. The torque and flux are then controlled in a deadbeat fashion. Good torque control over a wide speed range can therefore be obtained. With the proposed scheme, the advantages of direct torque control are obtained over the entire speed range with the addition of a speed sensor.
机译:本文讨论了在宽速度范围内运行的电动汽车中的定子磁通磁场定向感应电机驱动器的自调整控制方案。当电机高速运行时,可以根据端子电压准确确定定子磁通。但是,在低速下,必须知道定子电阻才能计算出定子磁通。解决了在整个速度范围内精确计算定子磁通的问题。转子磁通可以从电机速度和转子时间常数中找到。然后直接从转子磁通中计算出低速时的定子磁通。通过在确定定子磁通的这两种方法之间交替进行,实现了自调整操作,其中,定子和转子的电阻会定期更新。由于两种确定定子磁通的方法都必须相互跟踪,因此可以在磁通估算器之间实现平稳过渡。然后以无差拍的方式控制转矩和磁通。因此可以在较宽的速度范围内获得良好的转矩控制。通过提出的方案,通过增加速度传感器,可以在整个速度范围内获得直接转矩控制的优势。

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