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Photovoltaic power interface circuit incorporated with a buck-boost converter and a full-bridge inverter

机译:集成了降压-升压转换器和全桥逆变器的光伏电源接口电路

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摘要

This paper presents an efficient photovoltaic power interface circuit incorporated with a buck-boost converter and a full-bridge inverter. It connects up a solar array to power a utility line. The proposed interface circuit consists of five switches, an input inductor, and LC filters. The buck-boost converter operates at high switching frequency to make the output current a sine wave, whereas the full-bridge inverter operates at low switching frequency of 50-60 Hz, which is determined by the ac utility line frequency; thus, it can reduce the switching losses incurred by the full-bride inverter. In the output stage, a high power-factor is achieved without an additional current controller owing to the input inductor current operatly in a discontinuous conduction mode. Consequently, it has a simple and robust circuit configuration. Operational modes are analysed, and then the validity of the proposed interface circuit is verified through computer-aided simulations and experiments based on a laboratory prototype of 150 W.
机译:本文提出了一种高效的光伏电源接口电路,该电路结合了降压-升压转换器和全桥逆变器。它连接太阳能电池板以为公用事业线供电。拟议的接口电路由五个开关,一个输入电感器和LC滤波器组成。降压-升压转换器在高开关频率下工作,以使输出电流为正弦波,而全桥逆变器在50-60 Hz的低开关频率下工作,这由交流市电频率确定;因此,可以减少全桥逆变器产生的开关损耗。在输出级,由于输入电感器电流在不连续导通模式下可操作,因此无需额外的电流控制器即可实现高功率因数。因此,它具有简单而坚固的电路配置。分析工作模式,然后通过计算机辅助仿真和基于150 W实验室原型的实验验证所提出接口电路的有效性。

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