Zeta converter fed BLDC motor for Power Factor Correction and speed control

S. Pavithra, S. Umamaheswari
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引用次数: 1

Abstract

In the recent years, usage of variable speed driving systems have been increasing in various applications like automobile industries, domestic appliances, etc., To save the energy consumption of a devices, there is a necessity in the usage of green and eco friendly electronics. It leads to the development of Permanent Magnet Brushless DC Motor (PMBLDCM). The improved power factor and closed loop speed control of PMBLDCM using closed loop Zeta converter are proposed in this project. In the proposed model, a closed loop zeta converter is used for active Power Factor Correction as well as for voltage regulation. It is having advantages of being naturally isolated structure, can operate as both step-up and step-down voltage converter and having a single stage processing for both voltage regulation and power factor correction. The wide range of speed control of PMBLDC motor is achieved by controlling the voltage of DC link capacitor of zeta converter. In this model, an active power factor correction is performed by using a zeta converter operating in Continuous Conduction Mode (CCM), where the inductor current must follow a sinusoidal voltage waveform. In addition to this, the sensorless scheme of feedback control is implemented in PMBLDC motor which reduces the usage of Hall position sensors. This method provides nearly unity power factor with low Total Harmonic Distortion (THD) and also the implemented scheme improves the power factor and wide range of speed control of Permanent Magnet Brushless DC (PMBLDC) motor.
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Zeta变换器馈入无刷直流电机进行功率因数校正和速度控制
近年来,变速驱动系统在汽车工业、家用电器等各种应用中的使用越来越多,为了节省设备的能耗,有必要使用绿色环保的电子产品。它导致了永磁无刷直流电动机(PMBLDCM)的发展。本文提出了采用Zeta闭环变换器改进PMBLDCM的功率因数和闭环速度控制。在该模型中,闭环zeta变换器用于有源功率因数校正和电压调节。它具有自然隔离结构,可以作为升压和降压变换器工作,电压调节和功率因数校正都是单级处理的优点。通过控制zeta变换器直流链路电容的电压,实现了PMBLDC电机的大范围调速。在该模型中,通过使用在连续传导模式(CCM)下工作的zeta转换器进行有源功率因数校正,其中电感电流必须遵循正弦电压波形。此外,在PMBLDC电机中实现了无传感器反馈控制方案,减少了霍尔位置传感器的使用。该方法提供了接近统一的功率因数和低总谐波失真(THD),并改善了永磁无刷直流(PMBLDC)电机的功率因数和宽范围的调速控制。
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