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Synergistic Control Between Hydrogen Storage System and Offshore Wind Farm for Grid Operation

机译:储氢系统与海上风电场并网协同控制

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摘要

Wind energy is achieving worldwide acceptance as the most appealing renewable resource. Due to its increasing portion of generation mix, wind farms are expected to play the role similar to the traditional power plants. Down the road toward this goal, the intermittency and uncertainty of wind are the two important factors that should be solved. Today, storage systems present a very interesting alternative to deal with the wind variability. Among various storage types, the hydrogen system is showing a promising future due to the high storage efficiency, low emissions, and wide applications. This paper presents a new coordination control scheme between the offshore wind farm and a hydrogen management system (HMS) for reducing the adverse impacts of wind variability. In the proposed scheme, the HMS is situated onshore to provide medium- to long-term energy balancing service. A supercapacitor bank is supplemented to the system for providing the short-term transient compensation. System configuration and control strategies are also presented. Simulation tests were conducted to verify the feasibility and effectiveness of the proposed control. Test results indicate that the proposed control makes the wind farm be more flexible to satisfy the grid operation.
机译:风能已成为世界上最吸引人的可再生资源。由于风力发电的比例越来越高,预计风电场将发挥与传统发电厂相似的作用。在朝着这个目标前进的过程中,风的间歇性和不确定性是应解决的两个重要因素。如今,存储系统提供了一种非常有趣的替代方案来应对风的变化。在各种存储类型中,由于高存储效率,低排放和广泛的应用,制氢系统显示出光明的未来。本文提出了一种新的海上风电场与氢气管理系统(HMS)之间的协调控制方案,以减少风量变化的不利影响。在建议的方案中,HMS位于岸上以提供中长期能源平衡服务。超级电容器组是该系统的补充,可提供短期瞬态补偿。还介绍了系统配置和控制策略。进行了仿真测试,以验证所提出控制措施的可行性和有效性。测试结果表明,所提出的控制使风电场更加灵活,可以满足电网运行的需求。

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