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PWM Boost Converter Integrating Differential Power Processing Converter to Enhance Energy Yield of Photovoltaic Panels Under Characteristic Mismatch Conditions

机译:PWM升压转换器积分差动功率处理转换器,以提高特征不匹配条件下光伏板的能量产量

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Partial shading on a photovoltaic (PV) panel consisting of multiple substrings is known to trigger a significant reduction in energy yield and the occurrence of multiple maximum power points (MPPs), including one global and multiple local MPPs. Uneven irradiance on curved PV panels, such as flexible panels and solar roofs of electric vehicles, also causes characteristic mismatch, triggering the same issues. Although various types of differential power processing (DPP) converters have been proposed to preclude the characteristic mismatch issues, the DPP converter is separately required in addition to an existing boost converter for panel control, resulting in increased system complexity, cost, and volume. This study proposes a novel integrated converter that realizes system simplification and circuit miniaturization by integrating a PWM boost and a DPP converter into a single unit. Laboratory and field tests were performed emulating partial shading and characteristic mismatch conditions. The proposed converter eliminated local MPPs and increased maximum power while boosting the panel voltage, demonstrating the efficacy of the proposed integrated converter.
机译:已知由多个子串组成的光伏(PV)面板上的局部遮蔽,以触发能量产量的显着降低和多个最大功率点(MPP)的发生,包括一个全局和多个本地MPP。弯曲PV面板的不均匀辐照灯,如柔性板和电动车的太阳能屋顶,也导致特征不匹配,引发相同的问题。尽管已经提出了各种类型的差分电力处理(DPP)转换器来排除特性不匹配问题,但除了用于面板控制的现有升压转换器之外,DPP转换器还可以单独要求,导致系统复杂性增加,成本和体积增加。本研究提出了一种新颖的集成转换器,实现了通过将PWM升压和DPP转换器集成到单个单元中来实现系统简化和电路小型化。实验室和现场测试进行了模拟部分遮阳和特征不匹配条件。所提出的转换器消除了本地MPP并在提升面板电压时提高最大功率,展示了所提出的集成转换器的功效。

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