优化功率的光伏阵列重构技术建模与仿真

Salman Rafi, Md.Khursheed Alam, M. Jalil, S. Kirmani
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引用次数: 0

摘要

部分遮阳(PS)是一个经常影响光伏板的现象。近年来,许多光伏阵列重构技术取得了进展,在解决部分遮阳问题方面取得了重大进展。但是,目前使用的大多数技术仍然无法实现有效的色光分散和功率增强。本文介绍了改进数独技术的研究,并与其他技术进行了比较分析。这种改进的数独技巧是一种基于谜题的技巧,其中每一行和每一列的数字总和是恒定的,每一行和每一列都包含从1到9的数字。本文的主要目的是提高标准双色光模式的功率和色散。此外,还与其他著名的技术如蜂巢式(HC)和全交联式(TCT)进行了比较,证明了其卓越的性能。在功率增强和填充系数(FF)方面,所开发的方法在各个领域都提供了非常令人满意的性能。为了进一步证明所建议方法的适应性,基于其他性能指标(如最大功率GMPP(Pmax),填充因子(FF)以及失配损失(ML)和执行比(ER))进行了更彻底的分析。
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Modelling And Simulation of PV Array Reconfiguration Techniques to Optimize the Power
The partial shading (PS) is a phenomenon that affects PV panels frequently. Many Photo Voltaic (PV) array reconfiguration techniques have advanced recently, making significant progress in providing solutions to partial shading. But the majority of the currently used techniques still fall short of achieving efficient shade dispersion and power enhancement. This paper presents the study of Improved Sudoku technique and also provides a comparative analysis with other techniques. This Improved Sudoku Technique is a puzzle-based technique where the sum of numbers in each row and column is constant, and each row and column contains numbers from 1 to 9. The main objective of this paper is to improve the power and dispersion of the standard two shade patterns. Additionally, a comparison with other renowned techniques like Honey-comb (HC) and Total Cross Tied (TCT) is conducted to demonstrate its outstanding performance. In terms of power enhancement and fill factor (FF), the developed method offers extremely satisfactory performance in every area. To further demonstrate the adaptability of the suggested methodology, a more thorough analysis based on additional performance metrics such as maximum power GMPP(Pmax), fill factor (FF) along with mismatch losses (ML) and execution ratio (ER) is carried out.
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