风能与氢/超级电容器储能混合系统的集成与仿真

S. Z. Hassan, Hui Li, Şuayb Çağriyener, T. Kamal, G. Mufti, M. Waseem, Hina Gohar
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引用次数: 4

摘要

这项工作的重点是风力发电与混合存储系统,如氢(燃料电池)和超级电容器。风电优先满足用电需求。添加燃料电池作为备用,以确保长期能量平衡,而超级电容器在瞬态期间用作缓冲和/或备用电源。完整的架构通过各种电源转换器连接到公用事业,以提高整个系统的稳定性、连续性和可靠性。该系统的运行是通过电源管理和控制策略(PMCS)来完成的。PMCS的工作方式是最大限度地利用风能/燃料/超级电容器,减少对公用事业的压力。在不同的天气和负载条件下,对系统进行了为期一天的性能测试。MATLAB/Simulink仿真结果验证了所提模型的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration and simulation of wind with hydrogen/supercapacitor storage hybrid system
This piece of work focuses on wind power generation with hybrid storage system, e.g., hydrogen (fuel cell) and supercapacitor. The wind power has the priority to meet the demand. The fuel cell is added as a backup to ensure long-term energy balance while the supercapacitor is utilized as a buffer and/or backup source during transient. The complete architecture is connected to the utility through various power converters to improve the overall system stability, continuity and reliability of power. The operation of the proposed system is performed through Power Management and Control Strategy (PMCS). The PMCS works in such a way as to maximize the use of wind/fuel/supercapacitor and reduce stress on the utility. The performance of the system is tested for complete one day under different weather and load conditions. MATLAB/Simulink results are shown to verify the effectiveness of the proposed model.
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