部分遮阳条件下兆瓦级多电平光伏逆变器控制新策略

S. Essakiappan, H. Krishnamoorthy, P. Enjeti, R. Balog, S. Ahmed
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引用次数: 9

摘要

提出了一种适用于部分遮阳条件下兆瓦级光伏逆变器的控制策略。在所提出的系统中,光伏阵列被划分为区域,每个区域连接直流到交流逆变器。将多个区域的直流逆变器串联起来,形成所需的中压,向电网输送电能。在这样一个系统中,所有区域都均匀照明,所有逆变器的输出电压矢量是相等的大小和相位。然而,在部分遮阳的情况下,需要调整单个直流到交流逆变器的输出电压幅度和相位角,使可用的实际功率传输到电网,使整个系统的功率因数尽可能接近于一致。通过对各逆变器提供的实功率和无功功率的连续监测,提出了在部分遮阳条件下串联多电平逆变器配置的控制策略。所开发的策略不需要中央控制器和/或各种直流到交流逆变器模块之间的通信。针对额定功率为5mw的6.6 kV三相公用事业规模光伏系统进行了控制策略仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new control strategy for megawatt scale multilevel photovoltaic inverters under partial shading
In this paper, a new control strategy for megawatt scale multilevel photovoltaic (PV) inverters under partial shading is proposed. In the proposed system, the photovoltaic arrays are divided into zones and each zone is connected to DC to AC inverter. The DC to AC inverters of multiple zones are connected in series to form the required medium voltage and transfer power to the grid. In such a system where all zones are uniformly illuminated, the output voltage vectors of all the inverters are of equal magnitude and in phase with each other. However, under partial shading, the output voltage magnitude and phase angles of individual DC to AC inverters need to be adjusted in such a way that the available real power is transferred to the grid and the power factor of the overall system is as close to unity as possible. A control strategy is developed to operate the series connected multilevel inverter configuration under partial shading, by continuously monitoring the real and reactive powers supplied by each inverter. The developed strategy does not require a central controller and/or communications between the various DC to AC inverter blocks. The proposed control strategy is simulated for a 6.6 kV, three phase utility scale PV system rated at 5 MW.
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