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All-in-One Photovoltaic Power System: Features and Challenges Involved in Cell-Level Power Conversion in ac Solar Cells

机译:多合一光伏电源系统:交流太阳能电池单元级功率转换所涉及的功能和挑战

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摘要

Power converters constructed from discrete components are difficult to mass produce, and their installation requires a significant labor cost for the proper interconnection among the panel, inverter, and grid. Several critical applications, such as portable power stations (for use on a battlefield or scientific expedition), will require key attributes from a photovoltaic (PV)-based power system, such as modularity, high reliability, and quick set-up time. Therefore, a paradigm shift in the design of the entire PV power system is needed to mitigate this need. To increase the converter reliability and portability, the active and passive elements of a power converter [especially capacitors and active switches such as metal-oxide-semiconductor field-effect transistors (MOSFETs), junction gate field-effect transistors (JFETs), or insulated-gate bipolar transistors (IGBTs)] could be embedded on the same substrate material used for fabricating the p-n junctions in the PV panel. To the authors' knowledge, there is no prior work in cell-level power conversion with embedded converters, and therefore this project idea could be considered "outside the box." A novel fabrication process along with experimental results are presented in this article, 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. In addition, the effect of light exposure on converter switches has been analyzed to understand the converter behavior at various illumination levels. Simulation and experimental results have been provided to support this analysis. In addition to process-related challenges and issues, the justification of this integration is explained by achieving higher reliability, portability and complete modular construction for PV-based energy harvesting units.
机译:由分立元件构成的功率转换器很难批量生产,并且它们的安装要求面板,逆变器和电网之间正确互连所需的大量劳动力成本。诸如便携式电站(用于战场或科学考察)之类的一些关键应用将需要基于光伏(PV)的电力系统的关键属性,例如模块化,高可靠性和快速设置时间。因此,需要减轻整个光伏发电系统设计的范式变化。为了提高转换器的可靠性和便携性,功率转换器的有源和无源元件(尤其是电容器和有源开关,例如金属氧化物半导体场效应晶体管(MOSFET),结栅场效应晶体管(JFET)或绝缘的栅双极型晶体管(IGBT)]可以嵌入在用于制造PV面板中pn结的同一衬底材料上。据作者所知,在嵌入式转换器的电池级功率转换方面尚无任何先前的工作,因此该项目构想可被视为“开箱即用”。本文介绍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。此外,已经分析了曝光对转换器开关的影响,以了解转换器在各种照明水平下的行为。提供了仿真和实验结果来支持这一分析。除了与过程相关的挑战和问题之外,通过为基于PV的能量收集单元实现更高的可靠性,便携性和完整的模块化构造,可以说明这种集成的合理性。

著录项

  • 来源
    《IEEE Industry Applications Magazine》 |2013年第4期|12-23|共12页
  • 作者

    Imtiaz A.; Khan F.; Kamath H.;

  • 作者单位

    ECE, University of Utah, Salt Lake City, Utah 84112 USA|c|;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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