Modeling and control of grid-connected photovoltaic power plants utilizing a simplified model of the modular multilevel converter

Muhammad Alsadah, F. Mancilla–David
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引用次数: 6

Abstract

The intent of this paper is to implement a simplified model for a modular multilevel converter (MMC) to be used as an interface between a photovoltaic power plant and the ac grid. MMC-based topologies as well as photovoltaic (PV) arrays feature a large number of components, and therefore difficult to be simulated in detail. Because of this, researchers have developed simplified models for both the MMC and PV arrays to account for their terminal behavior. This paper makes use of terminal behavioral modeling techniques for MMCs and PV arrays proposed in the literature, developing a full model for a single-stage grid-connected PV power plant. The paper demonstrates via computer simulations the ability of the MMC to perform maximum power point tracking while injecting adjustable reactive power, similar to that of conventional two-level voltage source converters.
基于模块化多电平变换器简化模型的光伏并网电站建模与控制
本文的目的是实现一个简化模型的模块化多电平变换器(MMC),用于光伏电站和交流电网之间的接口。基于mmc的拓扑结构以及光伏(PV)阵列具有大量组件,因此难以详细模拟。正因为如此,研究人员已经为MMC和PV阵列开发了简化模型,以解释它们的终端行为。本文利用文献中提出的mmc和光伏阵列的终端行为建模技术,建立了单级并网光伏电站的完整模型。本文通过计算机仿真证明了MMC在注入可调无功功率时进行最大功率点跟踪的能力,类似于传统的双电平电压源变换器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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