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High-quality integration of fuel cells energy into electric grids

机译:燃料电池能量的高质量整合到电网中

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This paper investigates different converter topologies, and their control, that can be used as an interface between fuel cells and the DC bus in a power system. As an example, the integration of fuel cells energy to the DC bus in a DC zonal electric distribution system (DC ZEDS) will be focused on. The DC ZEDS example is reasonable as high-quality power supply is interesting the most for the US navy. Among the two topologies presented, one is new and its performance is compared to that of the conventional boost converter. The proposed topology utilizes a modified boost converter to enhance the integration of sustainable energy sources into the system. It gives continuous output current and some other advantages over the conventional one. However, it is more complex. A comparative study of the techniques presented in this paper will be conducted from performance as well as cost points of view. A prototype system has been designed and simulated in MATLAB/SIMULINK to validate the proposed technique. Moreover, it has been examined experimentally to verify the results and conclusions deduced out of the study. Both simulation and experimental results show the effectiveness of the proposed technique and its validity as a DC-DC converter for fuel cells integration to DC ZEDS and its outperformance over conventional DC-DC boost converters.
机译:本文调查了不同的转换器拓扑及其控制,可以用作电力系统中的燃料电池和直流总线之间的界面。例如,将燃料电池能量集成到DC区间配电系统(DC ZED)中的DC总线上的集成。 DC ZEDS示例是美国海军最受高质量的电源的合理性。在呈现的两个拓扑中,一个是新的,其性能与传统升压转换器的性能进行了比较。所提出的拓扑采用修改的升压转换器来增强可持续能源的集成到系统中。它提供连续输出电流和传统的输出电流和其他一些优点。但是,它更复杂。本文提出的技术的比较研究将从性能以及成本观点进行。在Matlab / Simulink中设计和模拟了原型系统以验证所提出的技术。此外,它已经通过实验检查,验证研究结果和结论。仿真和实验结果均显示了所提出的技术及其作为DC-DC转换器的有效性,用于燃料电池集成到DC ZEDS的燃料电池及其在传统的DC-DC升压转换器上的优越。

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