基于光伏的高效抽水解决方案原型

Kalaiarasi N, Akshaya Ravichandran, Swathipurna Sahoo
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摘要

本文讨论了基于功率因数校正的Cuk和Zeta变频无刷直流电机。对比研究基于转矩、定子电流、功率因数和转子转速等参数。在传统的PFC变换器设计中,电压源逆变器(VSI)的直流链路电压保持恒定。这种PFC转换器的主要缺点是控制复杂,需要大量的传感器。该DC-DC变换器采用连续导通(CCM)模式下的电压跟随器方法,以提高功率因数。此外,它还有助于减少开关损耗和对功率器件的压力。变频器采用低频开关,通过改变直流母线电压来控制电机的转速。采用基频开关降低了VSI的开关损耗。这提高了系统的效率。无刷直流电机的电子换向有助于消除测量直流链路电压和相电流所需的传感器。该系统采用比例积分(PI)控制,为低功耗应用提供了有利的解决方案。利用MATLAB仿真研究了无刷直流电机驱动变换器的性能。仿真结果表明,Cuk变换器的性能优于Zeta变换器。因此,实现了所建议模型的原型硬件,即Cuk变换器馈电无刷直流电机。
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An Efficient Prototype for PV based Water Pumping Solutions
This paper discusses the Cuk and Zeta converter-fed BLDC motors based on power factor correction. The comparative study is based on parameters like torque, stator current, power factor, and rotor speed of both converter-fed BLDC drives. The DC link voltage of the Voltage Source Inverter (VSI) is maintained constant in traditional PFC converter designs. This PFC converter’s primary drawback was complicated control, which necessitates a significant number of sensors. The proposed DC-DC converter follows the voltage follower approach in continuous conduction mode (CCM) to improve the power factor. Also, it helps to reduce switching losses and the stress on power devices. Low-frequency switching is utilized in the VSI to control the speed of the motor by changing the dc bus voltage. The switching loss of VSI is reduced by adopting fundamental frequency switching. This improves the efficiency of the system. Electronic commutation of the BLDC motor helps to eliminate the sensors required for the measurement of DC link voltage and phase currents. The proposed system with proportional-integral (PI) control provides a profitable solution for low-power applications. The performance of converters fed by BLDC motors is studied using MATLAB simulation. The results from Simulink show that the Cuk converter’s performance is better than the Zeta converter. So, the prototype hardware of the suggested model, i.e., the Cuk converter-fed BLDC motor, is implemented.
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