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Bypass Diodes Configurations for Mismatch and Hotspot Reduction in PV Modules

机译:旁路二极管配置可减少PV模块中的不匹配和热点

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Partial shading in PV module creates mismatch among the connected cells that results in unexpected consequences such as power reduction, mismatch loss, and hotspot formation whose long term existence can do physical damage to the PV module. In general, bypass diodes are installed in the module to prevent the shaded cells from mismatch, power consumption, and hotspot. However, the performance of module connected bypass diodes is very dependent on the degree and area of shade occurrence. Also, various bypass diodes configurations are available that can be adopted to improve the module performance during shading. In this paper, various bypass diodes configurations of module are examined in term of power generation, mismatch loss, efficiency, and ease of installation under different partial shading scenarios to study the optimal configuration for the PV module. The entire study is done in the MATLAB using power-voltage (P~V) curves analysis of the PV module.
机译:PV模块中的部分阴影会在连接的电池之间造成不匹配,从而导致不可预料的后果,例如功率降低,失配损失和热点形成,长期存在会严重损坏PV模块。通常,在模块中安装了旁路二极管,以防止阴影单元不匹配,功耗和热点变大。但是,模块连接的旁路二极管的性能非常取决于阴影发生的程度和区域。此外,还提供了各种旁路二极管配置,可以采用这些配置来改善遮光期间的模块性能。在本文中,从发电,失配损耗,效率以及在不同的局部遮光情况下的安装简便性等方面对模块的各种旁路二极管配置进行了研究,以研究光伏模块的最佳配置。整个研究是在MATLAB中使用PV模块的功率-电压(P〜V)曲线分析完成的。

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