Study of photovoltaic systems with differences connecting configuration topologies for applications in renewable energy systems

A. Chahmi
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引用次数: 2

Abstract

This paper focuses in the optimization of the efficiency of photovoltaic power conversion systems; we present a new alternative for improving both the optimization of the efficiency of photovoltaic power conversion chain. In this way, we present to the valuation problem of photovoltaic by new coupling systems between photovoltaic generators and their loads and performance of photovoltaic (PV) systems and the efficiency of the energy conversion by using different configuration of power converters. Different type’s improvements have been proposed of different architecture in order to choose the correct PV architecture for each PV installation on the efficiency improvement in all power conversion level stages between PV cells and loads. In this context, this work presents the study and adaptive simulation of photovoltaic systems with micro inverters configurations for applications of renewable energy. We performed comparative between a central and distribution connection of converter via an adaptation floor with Maximum Power Point Tracker (MPPT) control. For this reason, it is important to know different types of architecture and different configuration of power converters in order to choose the correct PV architecture for each PV installation. Simulation results are used to demonstrate the proposed topologies to provide improvement in efficiency over existing traditional PV systems. 
不同连接结构拓扑光伏系统在可再生能源系统中的应用研究
本文主要研究光伏发电转换系统的效率优化问题;我们提出了一种新的方案来提高光伏发电转换链的效率优化。在此基础上,提出了新型光伏发电机组与负荷耦合系统对光伏发电的评价问题,以及采用不同配置的电源变流器对光伏发电系统的性能和能量转换效率的影响。为了在光伏电池和负载之间的所有功率转换阶段提高效率,为每个光伏装置选择正确的光伏架构,对不同的架构提出了不同类型的改进。在此背景下,本研究提出了可再生能源应用中具有微型逆变器配置的光伏系统的研究和自适应仿真。我们通过最大功率点跟踪器(MPPT)控制的自适应地板对变流器的中心和配电连接进行了比较。因此,了解不同类型的架构和功率转换器的不同配置非常重要,以便为每个PV安装选择正确的PV架构。仿真结果用于证明所提出的拓扑结构可以提高现有传统光伏系统的效率。
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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