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Understanding partial shading effects in shingled PV modules

机译:了解落下光伏模块中的部分着色效果

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Shingled solar modules are one of several technologies currently being considered to obtain higher solar module efficiencies. Using equivalent circuit modelling this paper investigates the robustness of shingled modules to partial shading with respect to the power produced and the power dissipated in shaded shingles. The modeling results are experimentally verified. We find that power losses in shingled modules can be larger than in conventional modules for similar shading conditions. The risk of significant local heating resulting from partial shading, potentially leading to catastrophic module failure can also be higher in shingled modules due to the substantially higher reverse biases experienced by shaded shingles. Both risks can effectively be mitigated by operating each shingled module at its own maximum power point, for instance by using module level power electronics on each module or by incorporating a sufficient number of bypass diodes into the module design.
机译:Shingled Solar模块是目前被认为获得更高的太阳模块效率的若干技术之一。使用等效电路建模本文研究了凸块模块对相对于所产生的功率的局部遮蔽的鲁棒性,并且在阴影带中消散的功率散发。建模结果是通过实验验证的。我们发现凸块模块中的功率损耗可以大于传统模块,用于类似的阴影条件。由于阴影带状疱疹所经历的基本更高的反向偏差,偏遮蔽导致局部阴影导致的显着局部加热的风险也可能更高。通过在其自身的最大功率点操作每个凸起的模块,例如通过在每个模块上使用模块级功率电子器件或通过将足够数量的旁路二极管结合到模块设计中,可以有效地减轻了这种风险。

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