实现稳健的氢基电网系统以提高电能质量

Sheikh Tanzim Meraj, Nor Zaihar Yahaya, B. Singh, R. Kannan
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引用次数: 3

摘要

本文提出了一种鲁棒的氢基电网系统,以改善微电网的电能质量。近年来,氢技术的进步,如电解和燃料电池,使电能和氢之间的转换更有效,成本更低。依靠氢能的电动框架现在被用作电池等大型储能系统的替代品。与利用传统风能或太阳能产生大量电力的电力系统相比,当使用具有高水平压力存储的氢能源系统时,功率变化变得更加平稳。为了实现低电压、高效率、可靠性的电网配电系统内部电解槽与燃料电池的互连,采用了双向多电平电流源逆变器。利用MATLAB/Simulink建立了规划结构的仿真模型,展示了在不同情况下的适当行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of a Robust Hydrogen-based Grid System to Enhance Power Quality
This manuscript proposes a robust hydrogen-based grid system to improve the power quality of the microgrid. Advancement in hydrogen technologies such as electrolysis and fuel cell in recent times allow for more efficient and less costly conversion between electrical energy and hydrogen. Electric frameworks dependent on hydrogen energy are now being used as a replacement for big energy storages like battery. The power variations become smoother when a hydrogen-based energy system is used that has a storage of high levels of pressure as opposed to electrical systems that generate significant amount power from conventional wind or solar energies. In order to interconnect an electrolyser and fuel cell inside of a grid distribution system with low level of voltage, higher efficiency, and reliability, a bidirectional multilevel current source inverter is utilized. A simulation model of the planned structure is developed utilizing MATLAB/Simulink, showcasing the appropriate behavior under different circumstances.
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