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Submodule Integrated Distributed Maximum Power Point Tracking for Solar Photovoltaic Applications

机译:子模块集成分布式最大功率点跟踪,用于太阳能光伏应用

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This paper explores the benefits of distributed power electronics in solar photovoltaic applications through the use of submodule integrated maximum power point trackers (MPPT). We propose a system architecture that provides a substantial increase in captured energy during partial shading conditions, while at the same time enabling significant overall cost reductions. This is achieved through direct integration of miniature MPPT power converters into existing junction boxes. We describe the design and implementation of a high-efficiency ( $>$98%) synchronous buck MPPT converter, along with digital control techniques that ensure both local and global maximum power extraction. Through detailed experimental measurements under real-world conditions, we verify the increase in energy capture and quantify the benefits of the architecture.
机译:本文通过使用子模块集成的最大功率点跟踪器(MPPT),探索了分布式电源电子在太阳能光伏应用中的优势。我们提出了一种系统架构,该系统架构可在部分阴影条件下大幅提高捕获的能量,同时又可以显着降低总体成本。这是通过将微型MPPT电源转换器直接集成到现有接线盒中来实现的。我们描述了高效($> $ 98%)同步降压MPPT转换器的设计和实现,以及确保本地和全局最大功率提取的数字控制技术。通过在实际条件下进行详细的实验测量,我们验证了能量捕获的增加并量化了该架构的好处。

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