并网逆变器实现最大功率因数和最小总谐波失真的分析

Sheikh Md. Nayeem, Zahid Hasan Anik, Navila Rahman Nadi, K. M. Salim
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引用次数: 0

摘要

并网逆变器(grid - tie inverter, GTI)在将直流电源转换为基于电网的可调交流电源的同时,需要适当调节功率因数(Power Factor, PF),为公用电网提供高效的供电。此外,逆变器的设计必须基于在这种转换发生时对公用电网电压和电流产生的最小总谐波畸变。本文提出了一种500w逆变器的电源和控制系统架构,以获得更好的功率因数(PF),并能有效地降低公用电网的谐波含量。本文的新颖之处在于,实现了一种由全桥开关配置组成的逆变器,创造性地设计了单级直流到交流的功率转换,以获得最大的功率因数,并产生最小的THD,其中包含可随电网调节的正弦输出电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of a Grid Tie Inverter for attaining the Maximum Power Factor and Minimum Total Harmonic Distortion
A grid tie inverter (GTI) requires a proper adjustment of Power Factor (PF) to provide efficient power supply to the utility power grid while converting the DC power to an adjustable grid based AC power. Additionally, the inverter has to be designed based on a minimal total harmonic distortion that occurs on the utility power grid voltage and current while such conversion occurs. Presented herein is a power and control system architecture of a 500 W inverter for achieving a better power factor (PF) and which can efficiently diminish the harmonic content out of the utility power grid. Implementing an inverter that consists of a full-bridge switching configuration, the single stage of DC-to-AC power conversion is inventively designed hereby to attain maximum power factor as well to generate a minimum THD containing sinusoidal output voltage that is adjustable with the grid, is the novel feature of this paper.
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