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Torque ripple minimization closed loop speed control of BLDC motor with hysteresis current controller

机译:带有磁滞电流控制器的BLDC电机的转矩脉动最小化和闭环速度控制

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摘要

In Brushless DC (BLDC) motor ripple-free torque can be produced by preshaping the excitation currents with the help of electronically controlled commutators. This ripple-free torque minimizes copperlosses. In this paper, the position-sensorless direct torque and indirect flux control of brushless dc (BLDC) motor with non sinusoidal back electromotive force (EMF) has been extensively proposed. In the literature, several methods have been proposed for BLDC motor drives to obtain optimum current and to obtain optimum current and torque control pulsations in BLDC motor drives. Most methods are complicated and do not consider the stator flux linkage control, therefore, possible high-speed operations are not feasible. In this study, a novel and simple approach to achieve a low-frequency torque ripple-free direct control with maximum efficiency is presented. This method does not require pulse width modulation and need proportional plus integral regulator with respective hysteresis current controlling technique and also permits the regulation of varying signals. The validity and practical applications of the proposed sensorless three-phase BLDC motor drive scheme are verified through simulations results using Matlab/Simulink Platform.
机译:在无刷直流(BLDC)中,可以借助电子控制的换向器对励磁电流进行预整形,从而产生无脉动的转矩。这种无脉动的扭矩可最大程度地减少铜损。在本文中,已经广泛提出了具有非正弦反电动势(EMF)的无刷直流(BLDC)电动机的无位置传感器直接转矩和间接磁通控制。在文献中,已经提出了几种用于BLDC电动机驱动器的方法,以在BLDC电动机驱动器中获得最佳电流并获得最佳电流和转矩控制脉动。大多数方法很复杂,并且没有考虑定子磁链控制,因此,可能的高速运行是不可行的。在这项研究中,提出了一种新颖且简单的方法来实现具有最大效率的低频转矩无脉动直接控制。该方法不需要脉宽调制,并且需要具有各自的磁滞电流控制技术的比例加积分调节器,并且还可以调节变化的信号。通过Matlab / Simulink平台的仿真结果,验证了所提出的无传感器三相BLDC电机驱动方案的有效性和实际应用。

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