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Maximizing the power output of partially shaded solar PV array using novel interconnection method

机译:使用新型互连方法最大化部分阴影太阳能光伏阵列的功率输出

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Solar Photo Voltaic Array performance severely effect by the partial shading and fast changing irradiance conditions. The performance depends on shading patterns and position of the solar panels in solar PV array. This paper proposes a novel interconnection method (Magic Square method), which disburse the shade to maximize the power output of partially shaded solar PV Array. The proposed system is tested under different partial shaded conditions for change in irradiation. As the solar panels receive continuous change in irradiation, the P-V characteristics of solar array experience multiple peaks or local peaks. The multiple peaks with conventional Total Cross Tied (TCT) connection are avoided with a novel interconnection method. A novel interconnection method (Magic Square method) gives enhanced output power than the conventional TCT connection. The proposed interconnection method is tested with two groups of irradiations for every chosen shading pattern. The performance of the proposed method for 3×3 solar PV Array is tested using theoretical calculations, MATLAB simulations and experimental results on laboratory built hardware setup. The successful working of magic square method on laboratory setup assures for large number of panels in solar PV array and its usefulness of the system.
机译:太阳光电伏打阵列的性能受到部分阴影和快速变化的辐照条件的严重影响。性能取决于遮阳图案和太阳能光伏阵列中太阳能电池板的位置。本文提出了一种新颖的互连方法(Magic Square方法),该方法可以分配阴影以最大化部分阴影太阳能光伏阵列的功率输出。所建议的系统在不同的局部阴影条件下进行了辐照变化测试。随着太阳能电池板的辐射不断变化,太阳能电池阵列的P-V特性会经历多个峰值或局部峰值。新颖的互连方法避免了使用传统的总交叉捆绑(TCT)连接的多个峰。一种新颖的互连方法(Magic Square方法)比传统的TCT连接具有更高的输出功率。针对每种选定的阴影图案,使用两组辐射测试了提出的互连方法。使用理论计算,MATLAB仿真以及实验室建立的硬件设置的实验结果,对所提出的3×3太阳能光伏阵列方法的性能进行了测试。魔方方法在实验室设置中的成功工作确保了太阳能光伏阵列中的大量面板及其系统的实用性。

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