并网太阳能光伏系统高增益DC-DC升压变换器的设计与分析

Mohammad Reza Rasekh, P. Jamwal, Vijayakumar Gali, Mohammad Jawid Ahmadi
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引用次数: 1

摘要

提出了一种用于屋顶太阳能光伏(SPV)系统的高增益DC-DC变换器,该变换器具有多功能并网逆变器。为了实现屋顶SPV与公用电网的平滑集成,需要一个高增益的DCDC转换器来升压到更高的电压增益,以降低纹波电压和直流母线的开关应力。此外,这种高增益的直流电压通过多功能并网逆变器(MFGTI)转换成所需公用电网的三相交流电压。因此,为了将SPV与公用电网集成,需要克服一些挑战,例如保持电网同步,以及非线性负载和太阳辐照条件下的电能质量问题。提出了一种改进的同步参考框架控制技术,使MFGTI能够将SPV的有功功率注入公用电网。同时补偿无功功率和电流谐波,提高PF在IEEE标准519-2022内。利用MATLAB®/Simulink软件实现了该系统,并在各种太阳辐照和非线性载荷条件下对其进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Analysis of High Gain DC-DC Boost Converter for Grid Connected Solar Photovoltaic System
This paper presents a high-gain DC-DC converter for a rooftop solar photovoltaic (SPV) system with a multifunctional grid-tied inverter. In order to achieve a smooth integration of roof-top SPV with the utility grid, a high gain DCDC converter is required to boost up to a higher voltage gain, to reduce ripple voltage, and switching stress at the DC bus. Further, this higher gain DC voltage is converted into a three-phase AC voltage of the demanded utility grid by a multifunctionality grid-tied inverter (MFGTI). Hence for integrating the SPV with the utility grid, there are challenges to overcome, such as keeping the grid synchronized, and power quality issues under nonlinear load, & solar irradiation conditions. A modified synchronous reference frame (SRF) control technique is proposed to make the MFGTI capable to inject the active power from SPV into the utility grid. Simultaneously compensate the reactive power, and the current harmonics to improve the PF within the IEEE standard 519-2022. The proposed system is implemented using MATLAB®/Simulink software, and it is evaluated under various solar irradiation, and nonlinear load conditions.
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