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Proof of concept for a novel and smart shade resilient photovoltaic module

机译:新型智能遮阴弹性光伏模块的概念验证

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摘要

In this study, the performance of a shade resilient smart module is studied under a dynamic shading pattern. A smart module architecture is developed to mitigate the non-linear shading effect on the module performance. Partial shading decreases the output current of the shaded cells and affects the unshaded cells' output power. After distributing the module cells into small groups, based on a least square support vector machine optimisation method, DC-DC buck converters compensate the decreased current levels, by adjusting the output current and voltage level from any individual group of cells. The system is simulated in the MATLAB Simulink environment, and the output results are presented. Results show that the module performs efficiently and output power of the unshaded groups of cells never decreased because of the effect of shading on the other groups. Additionally, the maximum output power is harvested from all groups simultaneously. Prototype hardware is designed and built to implement the proof of concept. The real-time results of hardware testing show that the smart module performs as expected and mitigates partially shaded conditions by extracting maximum power from each group, regardless of other groups shading condition.
机译:在这项研究中,在动态阴影模式下研究了遮阳弹性智能模块的性能。开发了一种智能模块架构,以减轻非线性阴影对模块性能的影响。部分阴影会降低阴影单元的输出电流,并影响未阴影单元的输出功率。在基于最小二乘支持向量机优化方法将模块单元分配成小组之后,DC-DC降压转换器通过调整任何单个单元组的输出电流和电压电平来补偿降低的电流电平。该系统在MATLAB Simulink环境中进行了仿真,并给出了输出结果。结果表明,该模块有效运行,并且由于阴影对其他组的影响,未阴影单元组的输出功率不会降低。此外,最大输出功率是同时从所有组中收集的。设计并构建了原型硬件以实施概念验证。硬件测试的实时结果表明,该智能模块可以按预期运行,并且通过从每组提取最大功率来缓解部分阴影条件,而与其他阴影条件无关。

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