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Optimizing unit capacities for a wind-hydrogen power system of clustered wind farms

机译:优化集束式风电场的风氢发电系统的机组容量

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In general, wind power output of clustering wind farms must be massively transmitted. The wind power in each wind farm is correlated, intermittent, fluctuant, and cannot be accommodated all the time, causing the intractable decision of economical transmission capacity of a project transmitting wind power to a power grid. Furthermore, the drastic fluctuation of clustered wind power results in enormous challenges regarding the safety of a power system. For these reasons, the concept of a wind-hydrogen power system for clustered wind farms is proposed. Next, a multiobjective model for optimizing the capacities, including the transmission project, hydrogen-producing system, and fuel cells, is constructed based on the joint distributed character of wind speed, which consists of maximizing social benefit and the qualified rate of smoothing clustering wind power fluctuations. Finally, a case is analyzed in detail, accounting for the wind volatility, wind curtailment probability, and the costs of both hydrogen production and the fuel cells.
机译:总的来说,集束风电场的风能输出必须大量传输。每个风电场中的风能都是相互关联,断断续续,波动的,并且不能一直被容纳,这导致了将风能传输到电网的项目的经济传输能力的棘手决定。此外,聚集的风力发电的剧烈波动导致在电力系统安全方面的巨大挑战。由于这些原因,提出了用于集束式风电场的风氢发电系统的概念。接下来,基于风速的联合分布特征,构建了包括输电项目,制氢系统和燃料电池在内的优化容量的多目标模型,该模型包括最大化社会效益和使聚类风平稳的合格率。功率波动。最后,详细分析了一个案例,说明了风的波动性,风的削减概率以及制氢和燃料电池的成本。

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