在部分遮阳条件下提高发电量的各种基于数学的静态重构策略综述

Vaishali Gautam, S. Khatoon, M. Jalil
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引用次数: 0

摘要

近年来,可再生能源对能源市场做出了重大贡献。大量的光伏(PV)阵列装置证明了太阳能在可再生能源领域的作用日益扩大。部分阴影/不匹配的情况对光伏阵列来说是一种风险,可能会导致严重的功率损失并缩短太阳能电池板的使用寿命。部分遮蔽的光伏阵列的功率电压特性表现出许多局部最大值,其中一个是全局最大功率点。通过重构策略可以减小不匹配条件对光伏阵列的影响,重构策略又分为静态重构策略和动态重构策略。本文提供了可以在文献中找到的各种基于基于数学的静态重新配置策略的谜题模式。基于数学的重新配置技术使用数学规则来重新配置PV阵列。通过实施这些重新配置策略,发现可以提高电力生产,同时更好地传播阴影。
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A Review on Various Mathematical Based Static Reconfiguration Strategies to Improve Generated Power under Partial Shading Conditions
Renewable energy has made a significant contribution to energy markets in recent years. An abundance of Photovoltaic (PV) array installations attests to solar power’s expanding role in the renewable energy sector. Partial shadowing/mismatch situations are a risk for PV arrays that can cause significant power losses and reduce the lifetime of the solar panels. A partially shaded PV array’s power-voltage characterization exhibits many local maxima, one of which is the global maximum power point. The effects of mismatch conditions on the PV array are lessened by Reconfiguration strategies, that are further categorized into Static and Dynamic Reconfiguration strategies. This article offers a variety of the puzzle patterns that may be found in the literature that are based on the Mathematical based Static reconfiguration strategies. Mathematical based reconfiguration technique use a mathematical rule to reconfigure PV arrays. By implementing these reconfiguration strategies, it was discovered that power production could be enhanced while at the same time, shade was better spread.
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