太阳能光伏阵列建模、仿真、灵敏度分析及遮阳效应利用研究

G. Das, M. De, K. Mandal, S. Mandal
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引用次数: 3

摘要

近十年来,世界范围内太阳能的发展已经将最大功率点跟踪和模块失配损耗纳入研究范围。这种损失主要是由于太阳能电池板和各种太阳能组件的部分遮阳造成的。这些损失可以通过不同的参数分析来减少。有五种不同的相互关联的方案,描绘了正常运行条件下合理可靠的发电量预测。光伏发电是一种发电转换的方法,即利用具有光伏效应的半导体器件将太阳辐射转化为电能。分析了不同太阳辐照水平和温度下的电流过电压和功率过电压特性。在本研究中,利用Matlab开发了一种新颖的理论模型,在简单性和准确性之间取得了很好的折衷,以确定不同类型的太阳能组件/阵列的参数研究,以证明仿真模型的可行性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation on modeling, simulation and sensitivity analysis of solar photovoltaic array and utilization of shading effects
Development of solar energy worldwide in the last ten years has brought into purview the maximum power point tracking and module mismatch losses. Such losses are mainly occurred by partial shading of the solar panel and various kinds of solar modules. These losses can be reduced by different parameter analysis. There are five various interconnected plans, which depict reasonably reliable power production prognosticate under normal operating condition. PV is the method of generating electric power conversion i.e. solar radiation into electrical power using semiconductor devices exhibiting the photovoltaic effects. The analysis of current over voltage and power over voltage characteristics at varying solar irradiation levels and temperatures has been obtained. In this study, a novel theoretical model, offering a good compromise between simplicity and accuracy, is developed using Matlab to determine the parametric study of different types of solar module /arrays to demonstrate a feasibility and reliability of the simulation model.
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