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Simple Flux Regulation for Improving State Estimation at Very Low and Zero Speed of a Speed Sensorless Direct Torque Control of an Induction Motor

机译:简单的磁通调节可改善感应电动机的无速度传感器直接转矩控制的极低和零速状态估计

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This paper presents a simple flux regulation for a direct torque control (DTC) of an induction motor (IM) to improve speed and torque estimations at low- and zero-speed regions. To accomplish this, a constant switching frequency controller (CSFC) is used to replace the three-level hysteresis torque comparator of a DTC IM. The DTC of IM utilizing CSFC (DTC-CSFC) retains the simple structure of a lookup table-based DTC drive. With DTC-CSFC, constant switching frequency is maintained, and at the same, the flux droop problem that normally occurs in DTC with the hysteresis controller (DTC-HC) at low speed is solved; subsequently, the stator flux and torque estimations at low speed are also improved. In the proposed system, the speed feedback for the closed-loop speed control is estimated using an extended Kalman filter, which requires heavy real-time computation. However, due to the simple structure of DTC-CSFC, small sampling time, hence large control bandwidth is possible. The performances of the speed sensorless DTC-HC and DTC-CSFC are compared experimentally under different operating conditions. With the improved stator flux regulation, experimental results of the DTC-CSFC showed a significant improvement in speed and torque estimations at very low and zero-frequency operations.
机译:本文提出了一种用于感应电动机(IM)的直接转矩控制(DTC)的简单磁通调节,以改善低速和零速区域的速度和转矩估计。为此,使用恒定开关频率控制器(CSFC)代替DTC IM的三级滞后转矩比较器。利用CSFC的IM的DTC(DTC-CSFC)保留了基于查找表的DTC驱动器的简单结构。使用DTC-CSFC,可以保持恒定的开关频率,并且解决了磁滞控制器(DTC-HC)低速在DTC中通常发生的磁通下降问题。随后,低速时的定子磁通和转矩估计也得到了改善。在提出的系统中,使用扩展的卡尔曼滤波器估计用于闭环速度控制的速度反馈,这需要大量的实时计算。但是,由于DTC-CSFC的结构简单,因此采样时间短,因此控制带宽大。在不同的操作条件下,通过实验比较了无速度传感器DTC-HC和DTC-CSFC的性能。通过改进的定子磁通调节,DTC-CSFC的实验结果表明,在非常低的频率和零频率运行时,速度和转矩估计值得到了显着改善。

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