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A Novel Reconfiguration Method Using Image Processing Based Moving Shadow Detection, Optimization, and Analysis for PV Arrays

机译:一种基于图像处理的运动阵列检测,优化和分析的图像重构新方法

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Reconfiguration system, which increases the energy efficiency in photovoltaic (PV) systems, is a critical stage in terms of energy efficiency. In this study, a moving shadow analysis and a novel optimization based on the reconfiguration method are proposed. The proposed approach builds up a new configuration by incorporating the radiation values into the PV system. To this end, the system is divided into two parts: adaptive and fixed, with the help of switching matrices. Image processing is employed in the study to acquire shadows and their information. The clonal selection method, which is an artificial immune algorithm, is preferred as the optimization process. The method is tested on a real PV system of a matrix size of 3x4. Both the series-parallel (SP) and total-cross-tied (TCT) connections are used in the tests. Shadows cast on the PV system are monitored incessantly by a camera and a reconfiguration is applied according to a predefined time threshold. The tests, performed in real time, show that the proposed system is accurate and efficient. The proposed reconfiguration method provides 10-20% of the average energy extraction for the S&P and TCT configuration layout.
机译:就提高能效而言,可提高光伏(PV)系统能效的重配置系统是至关重要的阶段。在这项研究中,提出了一种运动阴影分析和一种基于重构方法的新型优化方法。所提出的方法通过将辐射值合并到PV系统中来建立新的配置。为此,在切换矩阵的帮助下,系统分为两部分:自适应部分和固定部分。研究中使用图像处理来获取阴影及其信息。克隆选择方法是一种人工免疫算法,是优化过程的首选。该方法在矩阵尺寸为3x4的真实PV系统上进行了测试。测试中同时使用了串并联(SP)和全交叉(TCT)连接。摄像机不断监视投射在PV系统上的阴影,并根据预定义的时间阈值进行重新配置。实时执行的测试表明,所提出的系统准确有效。建议的重新配置方法为S&P和TCT配置布局提供了平均能量提取的10-20%。

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