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Light-Generated Effects on Power Switches Used in a Planar PV Power System With Monolithically Embedded Power Converters

机译:带有单片嵌入式电源转换器的平面光伏电源系统中的电源开关的光产生效应

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摘要

The reliability, efficiency, and controllability of photovoltaic (PV) power systems can be increased by embedding the components of a typical power converter on the same Si substrate of a PV cell. In order to achieve more insight into the macro or surface electronics, a novel fabrication process along with experimental results have been presented in this paper, demonstrating the integration of PV cells and major components needed to build a power converter on the same substrate/wafer. Because of the cell level power conversion, PV panels constructed from these cells are likely to be immune to partial shading and hot-spot effects. Several critical applications such as a portable power station in a battlefield or scientific expedition can greatly benefit from an “all in one” PV system featuring several key attributes such as modularity, high reliability, and quick setup time. In this paper, the effect of light exposure on converter switches embedded on the PV substrate has been analyzed to understand the converter behavior at various illumination conditions. Simulation and experimental results have been provided to support the concept presented in this paper. To the knowledge of the authors, surface or macro electronics have not been implemented to PV power systems yet, and therefore, the effect of light on the surface switches needs to be studied greater depth.
机译:通过将典型功率转换器的组件嵌入到PV电池的同一Si基板上,可以提高光伏(PV)电源系统的可靠性,效率和可控性。为了获得对宏观或表面电子学的更多了解,本文提出了一种新颖的制造工艺以及实验结果,展示了PV电池与在同一衬底/晶圆上构建功率转换器所需的主要组件的集成。由于电池级的功率转换,由这些电池构成的光伏面板可能不受部分阴影和热点影响。诸如战场或科学考察中的便携式电站之类的一些关键应用可以从具有多个关键属性(例如模块化,高可靠性和快速设置时间)的“多合一”光伏系统中受益匪浅。在本文中,已经分析了曝光对嵌入在PV基板上的转换器开关的影响,以了解转换器在各种照明条件下的行为。提供了仿真和实验结果来支持本文提出的概念。据作者所知,表面或宏观电子设备尚未应用于PV电力系统,因此,需要对表面开关上的光影响进行更深入的研究。

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