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Sensorless direct torque and indirect flux control of brushless DC motor with non-sinusoidal back-EMf

机译:无无刷直流电动机的无传感器直接扭矩和间接通量控制,具有非正弦的反电动势

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In this paper, the position sensorless direct torque and indirect flux control (DTIFC) of BLDC motor with non-sinusoidal (non-ideal trapezoidal) back-EMF has been extensively investigated using three-phase conduction scheme with six-switch inverter. In the literature, several methods have been proposed to eliminate the low-frequency torque pulsations for BLDC motor drives such as Fourier series analysis of current waveforms and eitheriterative or least-mean-square minimization techniques. Most method do not consider the stator flux linkage control, therefore possible high-speed operations are not feasible. In this work, a novel and simple approach to achieve a low-frequency torque ripple-free direct torque control with maximum efficiency based on dq reference frame similar to permanent magnet synchronous motor (PMSM) drives is presented. The electrical rotor position is estimated using winding inductance, and the stationary reference frame stator flux linkages and currents. The proposed sensorless DTC method controls the torque directly and stator flux amplitude indirectly using d-axis current. Since stator or flux is controllable, flux-weakening operation is possible. Moreover, this method also permits to regulate the varying signals. Simple voltage vector selection look-up table is designed to obtain fast torque and flux control. Furthermore, to eliminate the low-frequency torque oscillations, two actual and easily available line-to-line back-EMF constants (kba and kca according to electrical rotor position are obtained offline and converted to the dq frame equivalents using the new Line-to-Line Park Transformation. Then, they are set up in the look-up table for torque estimation. The validity and practical applications of the proposed three-phase conduction DTC of BLDC motor drive scheme are verified through simulations and experimental results.
机译:本文采用三相传导方案,采用三相传导逆变器,广泛研究了具有非正弦波(非理想梯形)反电动机的BLDC电动机的位置无传感器直接扭矩和间接通量控制(DTIFC)。在文献中,已经提出了几种方法来消除BLDC电动机驱动器的低频扭矩脉动,例如傅立叶串联分析电流波形和任义或最小均值最小化技术。大多数方法不考虑定子通量连杆控制,因此可能的高速操作是不可行的。在这项工作中,提出了一种新颖的和简单的方法来实现具有基于类似于永磁同步电动机(PMSM)驱动器的DQ参考帧的最大效率的低频扭矩波动直接转矩控制。使用绕组电感估计电转子位置,以及静止参考框架定子通量连接和电流。所提出的无传感器DTC方法直接控制扭矩和定子通量幅度,使用D轴电流间接地控制。由于定子或通量是可控的,因此可以进行磁通量弱化。此外,该方法还允许调节变化信号。简单的电压矢量选择查找表旨在获得快速扭矩和磁通控制。此外,为了消除低频扭矩振荡,两种实际且可用的线路到线路反型电气常数(K BA 和K CA 根据电动转子位置使用新的线到线公园变换来获得离线并转换为DQ帧等价物。然后,它们在查找表中设置以进行扭矩估计。提出的三相传导DTC的有效性和实际应用通过模拟和实验结果验证BLDC电机驱动方案。

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