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Modeling of the photovoltaic cell circuit parameters for optimum connection model and real-time emulator with partial shadow conditions

机译:光伏电池电路参数建模,以优化连接模型和具有部分阴影条件的实时仿真器

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摘要

Photovoltaic (PV) power has been successfully used for over five decades. The output characteristics of a PV array vary nonlinearly when temperature or irradiance conditions change. At the beginning of this paper, the performance of PV panel is analyzed, for parallel and series connections of solar cell elements exposed to the same light conditions and temperature by using the Brune's conditions of interconnection. Therefore the parameters of the equivalent circuits for each typical PV cell connections are characterized by a new set of matrix equations. A Lab View application is implemented to prove the theoretical models. Moreover, the grid connected PV systems have become more popular because they do not need battery back-ups to ensure maximum power point tracking (MPPT). However, partial shading is one of the main causes that reduces energy yield of PV array. In this respect, the second part of the paper refers to the influences of different irradiance conditions on the PV array performance in order to achieve MPPT under shaded array conditions. Consequently, PV array emulator is crucial for the operational evaluation of system components. The purpose of this study extension is to design and develop a new real-time emulator of PV array output characteristics based on closed-loop reference model.
机译:光伏(PV)电源已经成功使用了五十多年。当温度或辐照度条件改变时,PV阵列的输出特性会非线性变化。在本文开始时,通过使用Brune的互连条件,分析了暴露在相同光照条件和温度下的太阳能电池元件的并联和串联连接的PV面板的性能。因此,通过一组新的矩阵方程来表征每个典型PV电池连接的等效电路的参数。实施了Lab View应用程序以证明理论模型。而且,并网光伏系统已经变得越来越流行,因为它们不需要备用电池来确保最大功率点跟踪(MPPT)。但是,部分遮挡是降低光伏阵列能量产量的主要原因之一。在这方面,本文的第二部分涉及不同照射条件对PV阵列性能的影响,以便在阴影阵列条件下获得MPPT。因此,PV阵列仿真器对于系统组件的运行评估至关重要。本研究扩展的目的是基于闭环参考模型设计和开发新的PV阵列输出特性的实时仿真器。

著录项

  • 来源
    《Energy》 |2012年第1期|p.57-67|共11页
  • 作者单位

    Automatic Control and Industrial Data Processing Laboratory of Poitiers (LAⅡ), Poitiers National School of Engineering (ENSIP), University of Poitiers, 2 rue Pierre Brousse,Batiment B25, B.P. 633, 86022 Poitiers Cedex, France;

    Department of Automatics, Informatics, and Electrical Engineering, Valahia University of Targoviste, 18-20, Boulv. Unirii, 130082 Targoviste, Romania;

    Automatic Control and Industrial Data Processing Laboratory of Poitiers (LAⅡ), Poitiers National School of Engineering (ENSIP), University of Poitiers, 2 rue Pierre Brousse,Batiment B25, B.P. 633, 86022 Poitiers Cedex, France;

    Department of Automatics, Informatics, and Electrical Engineering, Valahia University of Targoviste, 18-20, Boulv. Unirii, 130082 Targoviste, Romania;

    Automatic Control and Industrial Data Processing Laboratory of Poitiers (LAⅡ), Poitiers National School of Engineering (ENSIP), University of Poitiers, 2 rue Pierre Brousse,Batiment B25, B.P. 633, 86022 Poitiers Cedex, France;

    Department of Electrical Engineering, Politehnica University of Bucharest, 313, Splaiul Independentei, 060042 Bucharest, Romania;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    photovoltaic (PV) cell and array; circuit parameters; matrix equations; maximum power point tracking (MPPT); lab view application; real-time PV emulator;

    机译:光伏(PV)电池和阵列;电路参数;矩阵方程最大功率点跟踪(MPPT);实验室视图应用程序;实时光伏模拟器;

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