基于MATLAB/Simulink的太阳能光伏组件结构局部遮阳效果分析

Hoe-Gil Lee, Jash N Shah, P. Tyagi, V. M
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引用次数: 5

摘要

太阳能是可再生能源的一个重要方面,因为我们可以很容易地获得其来源。光伏(PV)电池是太阳能系统能量转换的基本单元。当光伏电池由于多种环境条件而暴露于部分遮阳时,太阳能光伏组件的性能在系统效率方面受到显著影响。在许多情况下,PV阵列被遮蔽,无论是完全或部分,通过云层,邻近的建筑物和塔,树木,或一个太阳能电池阵列落在另一个太阳能电池阵列的阴影。本研究考察了部分遮阳对不同配置的太阳能光伏组件能量输出的影响。在本研究中,研究了三种不同的太阳能光伏配置:1)串联、2)并联和3)串并联。所有考虑的PV配置都使用几种可能的遮阳场景进行分析,以评估其性能,并找到由于阴影问题而相对不易受电气不匹配影响的配置。由于在不同阵列尺寸上进行实验的实际困难,所提出的模型还包括光伏模块的一般模型,该模型在MATLAB/Simulink上实现,并已针对任何所需的阵列尺寸,配置和不同的遮阳模式进行了开发。该模型简单,特别适用于计算光伏组件在各种运行条件下的实际性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Partial Shading Effects of Solar PV Module Configurations Using MATLAB/Simulink
Solar energy is an important aspect of renewable energy because we can easily obtain access to the source. The photovoltaic (PV) cell is the fundamental unit in the power conversion of the solar system. When the PV cells are exposed to partial shading as a result of a multitude of environmental conditions, the performance of the solar PV module is remarkably affected in terms of the efficiency of the system. In many cases, the PV arrays are shadowed, whether completely or partially, by passing clouds, neighboring buildings and towers, trees, or the shadow of one solar array falling on another. This study investigates the effects of partial shading on energy output of different configurations of solar PV modules. In this study, three different solar PV configurations are investigated: 1) Series 2) Parallel, and 3) Series-Parallel. All the considered PV configurations are analyzed using several possible scenarios of shading in order to evaluate their performances and to find a configuration that is comparatively less susceptible to electrical mismatches due to shadow problems. Owing to the practical difficulty of conducting experiments on varied array sizes, the proposed model also includes a general model of a PV module, which was implemented on MATLAB/Simulink and has been developed for any required array size, configuration and different shading patterns. This model is simple and especially useful to calculate the actual performances of the PV modules under various operating conditions.
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