Modelling and Simulation of Maximum Power Point Tracking Algorithm based PV Array and Utility Grid Interconnected System

Sohel Syed, A. Cheeran
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引用次数: 1

Abstract

Depletion of non-renewable energy sources with the increasing demand in electricity and also to avoid islanding condition an efficient and sustained source of energy becoming mandatory. This paper focuses on mathematical modeling and simulation of PV module with boost converter interconnected with utility grid. MPPT algorithm named Incremental conductance (Inc. Cond.) technique is implemented in boost converter to extract maximum possible power from PV module which in turn depends on solar irradiance and temperature. The output from converter is fed to real time utility grid. This work lead to utilize the renewable solar energy at a large scale by interconnecting PV module and utility grid while extracting constant maximum power from module. This paper will review existing approaches on MPPT algorithms. PV module of 100kw is converted into AC and fed to utility grid. PV and IV characteristics are obtained by modeling mathematically for data sheet SunPower SPR-305E-WHT-D in MATLAB code. The output waveforms for power output from PV module before and after implementation of MPPT algorithm are analyzed through MATLAB Simulation.
基于光伏阵列与电网互联系统最大功率点跟踪算法的建模与仿真
随着电力需求的增加,不可再生能源的枯竭,也为了避免孤岛状况,一种有效和持续的能源成为强制性的。本文主要研究了带升压变换器的光伏组件与电网并网的数学建模与仿真。MPPT算法名为增量电导(Inc. Cond)技术在升压转换器中实现,以从光伏模块中提取最大可能的功率,这反过来取决于太阳辐照度和温度。变流器输出的电能被实时送入电网。该项目通过光伏组件和公用电网的互联,大规模利用可再生太阳能,同时从组件中提取恒定的最大功率。本文将回顾现有的MPPT算法。100kw的光伏组件转换成交流电并网。通过MATLAB代码对数据表SunPower SPR-305E-WHT-D进行数学建模,得到PV和IV特性。通过MATLAB仿真分析了实现MPPT算法前后光伏模块输出功率的输出波形。
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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