并网三相三电平二极管箝位单级光伏变换器的设计与控制

Fatma Ezzahra Lahouar, M. Hamouda, J. Ben Hadj Slama
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引用次数: 8

摘要

介绍了一种基于三相三电平中性点箝位(NPC)变换器的单级光伏并网发电系统。该结构的主要优点是消除了通常用于提升直流电压和确保MPPT运行的中间DC/DC功率转换阶段。因此,基于电流控制器和MPPT算法的两种控制方案仅在一个处理阶段进行处理。MPPT算法实时计算应施加在光伏发电机组上的直流电压,以提取最大功率。因此,MPPT算法的输出被认为是电流控制器的参考,该电流控制器应该对直流电压参考进行完美的跟踪,并且接近单位输入功率因数。通过数值仿真对所提出的光伏电源转换拓扑结构和控制方法进行了验证。结果表明,所设计的光伏转换系统在稳态下具有有效的响应能力,对最大功率点的跟踪速度较快,在部分遮阳情况下具有较强的鲁棒性。
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 control of a grid-tied three-phase three-level diode clamped single-stage photovoltaic converter
This paper introduces a single-stage grid-connected photovoltaic power conversion system based on a three-phase three-level Neutral Point Clamped (NPC) converter. The main benefits of the proposed structure are the elimination of the intermediate DC/DC power conversion stage that is usually used to boost the dc-voltage and ensure MPPT operation. Therefore, two control schemes based on a current controller and an MPPT algorithm are handled in only one processing stage. The MPPT algorithm computes in real-time the dc voltage that should be applied across the PV generator so as to extract the maximum power. The output of the MPPT algorithm is thereafter considered as a reference of a current controller that should perform a perfect tracking of the dc-voltage reference and also near unity input power factor operation. The proposed photovoltaic power conversion topology and control method are tested by numerical simulations. The obtained results demonstrate that the designed PV conversion system provides effective response in steady state, fast and perfect tracking of the maximum power point, and robust in case of a partial shading.
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