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An integrated hybrid power supply for distributed generation applications fed by nonconventional energy sources

机译:用于非常规能源馈电的分布式发电应用的集成混合电源

摘要

A new, hybrid integrated topology, fed by photovoltaic (PV) and fuel cell (FC) sources and suitable for distributed generation applications, is proposed. It works as an uninterruptible power source that is able to feed a certain minimum amount of power into the grid under all conditions. PV is used as the primary source of power operating near maximum power point (MPP), with the FC section (block), acting as a current source, feeding only the deficit power. The unique "integrated" approach obviates the need for dedicated communication between the two sources for coordination and eliminates the use of a separate, conventional dc/dc boost converter stage required for PV power processing, resulting in a reduction of the number of devices, components, and sensors. Presence of the FC source in parallel (with the PV source) improves the quality of power fed into the grid by minimizing the voltage dips in the PV output. Another desirable feature is that even a small amount of PV power (e.g., during low insolation), can be fed into the grid. On the other hand, excess power is diverted for auxiliary functions like electrolysis, resulting in an optimal use of the energy sources. The other advantages of the proposed system include low cost, compact structure, and high reliability, which render the system suitable for modular assemblies and "plug-n-play" type applications. All the analytical, simulation, and experimental results of this research are presented.
机译:提出了一种新的混合集成拓扑,该拓扑由光伏(PV)和燃料电池(FC)供电,适用于分布式发电应用。它用作不间断电源,能够在所有条件下将一定量的最小功率馈入电网。 PV用作在最大功率点(MPP)附近工作的主要电源,而FC部分(块)用作电流源,仅提供赤字功率。独特的“集成”方法消除了两个电源之间进行协调专用通信的需要,并且消除了PV功率处理所需的单独的常规DC / DC升压转换器级的使用,从而减少了设备,组件的数量和传感器。并联使用FC电源(与PV电源),可通过最小化PV输出中的电压骤降来提高馈入电网的电能质量。另一个期望的特征是即使少量的PV功率(例如,在低日照期间)也可以被馈入电网。另一方面,多余的功率被转移到诸如电解之类的辅助功能上,从而实现了能源的最佳利用。所提出的系统的其他优点包括低成本,紧凑的结构和高可靠性,这使得该系统适合于模块化组件和“即插即用”型应用。介绍了这项研究的所有分析,模拟和实验结果。

著录项

  • 作者

    JAIN SACHIN; AGARWAL VIVEK;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_us
  • 中图分类

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