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Performance of BLDC Motor Speed Control Based on Hysteresis Current Control Mechanism

机译:基于磁滞电流控制机制的BLDC电机速度控制性能

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Brushless dc (BLDC) motor has been widely used for daily life due to has high ratio of torque, wide range of speed regulation and high efficiency compared to conventional dc motor. However, BLDC motor cannot be operated independently and needs electronic devices to control both its speed and torque. Usually, three phase inverter is required to generate commutations based on the position of rotor. Due to high frequency switching in the inverter side causes harmonic problems which affects the poor value of power factor (PF). In this paper implements hysteresis current control method in the bridgeless isolated cuk (BIC) converter topology in order to control the speed of BLDC motor and improving of power factor. From simulation results indicate that hysteresis current control is working perfectly to respond the fluctuation of speed and able to increase power factor compared to average current control method.
机译:与传统的直流电动机相比,无刷直流(BLDC)电动机具有高转矩比,宽泛的调速范围和高效率,因此已广泛用于日常生活中。但是,BLDC电动机无法独立运行,需要电子设备来控制其速度和转矩。通常,需要三相逆变器根据转子的位置产生换向。由于逆变器侧的高频开关,会引起谐波问题,从而影响功率因数(PF)的较差值。为了控制BLDC电动机的速度并提高功率因数,本文在无桥隔离Cuk(BIC)转换器拓扑中实现了磁滞电流控制方法。从仿真结果可以看出,与平均电流控制方法相比,磁滞电流控制可完美地响应速度波动并能够提高功率因数。

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