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Reduced sensor configuration of a power factor correction based single-ended primary inductance converter fed brushless DC motor drive

机译:基于功率因数校正的单端初级电感转换器,无刷直流电机驱动器的传感器配置减少

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摘要

This study presents a power factor correction-based single-ended primary inductance converter (PFC-SEPIC) feeding brushless DC (BLDC) motor drive for low-power household appliances. In a conventional scheme of BLDC motor, the speed is varied by controlling the duty ratio of high-frequency pulse width modulation signals, which increase the switching losses in the voltage source inverter (VSI) feeding BLDC motor. However, this study presents a BLDC motor of which the speed is controlled by adjusting the DC bus voltage of the VSI feeding BLDC motor. Moreover, a fundamental switching frequency of VSI is employed for reduction of its switching losses by operating the BLDC motor in electronic commutation. A PFC-based SEPIC is designed for its operation in discontinuous inductor current mode such that the voltage control is achieved using a single voltage sensor with inherent PFC at AC mains; which also makes it a cost effective solution for low power applications. The proposed drive is implemented on the developed converter for the performance evaluation. This drive shows high efficiency as compared with conventional schemes of BLDC motor drive with satisfactory power quality performance at various speeds satisfying IEC 61000-3-2 standard.
机译:这项研究提出了一种基于功率因数校正的单端初级电感转换器(PFC-SEPIC),用于低功率家用电器的无刷直流(BLDC)电机驱动。在BLDC电动机的常规方案中,通过控制高频脉冲宽度调制信号的占空比来改变速度,这会增加向BLDC电动机供电的电压源逆变器(VSI)的开关损耗。但是,本研究提出了一种BLDC电动机,其速度可通过调节VSI馈电BLDC电动机的DC总线电压来控制。而且,通过在电子换向中操作BLDC电动机,采用VSI的基本开关频率来降低​​其开关损耗。基于PFC的SEPIC设计为在不连续电感器电流模式下工作,因此,使用具有交流电源固有PFC的单个电压传感器即可实现电压控制;这也使其成为低功耗应用的经济有效的解决方案。建议的驱动器在开发的变频器上实施,以进行性能评估。与传统的BLDC电机驱动器相比,该驱动器显示出高效率,并且在满足IEC 61000-3-2标准的各种速度下具有令人满意的电能质量性能。

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