基于能源交易的风电场和加氢站运行优化

Pengcheng Cai, Zixu Liu, Yang Mi, J. Peng, Shunfu Lin, Siyuan Ma
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引用次数: 1

摘要

利用风力发电场等可再生能源电解水制氢,可以满足低碳或零碳排放的要求。此外,为加氢站(hfs)现场制氢和储氢是目前最经济的制氢解决方案。传统的研究往往忽略了小波变换和HFSs的独立实体,而将它们作为一个实体进行联合运行优化。本文建立了基于合作博弈的WF和hfs合作运行模型,提出了一种基于能源交易在合作中的贡献程度的利益分享方法,克服了hfs规模较大时Shapley值分配计算复杂度过高的缺点。仿真结果表明,该合作可以大大降低hfs的成本,提高WT的运行效益。此外,与Shapley值方法相比,该方法加快了计算速度,提高了玩家之间能量交互的积极性。此外,与Shapley值法相比,本文提出的利益分配方法加快了计算速度,提高了参与者之间能量互动的积极性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Operation Optimization for Wind Farm and Hydrogen Fueling Stations via Energy Trading
Using renewable energy, e.g., wind farm (WF), to generate hydrogen by electrolysis of water is capable of satisfying the requirement of low carbon or zero carbon emission. In addition, the on-site hydrogen generation and storage of hydrogen for hydrogen refueling stations (HFSs) is currently the most economical hydrogen production solution. Conventional studies usually ignore the independent entity of WT and HFSs and regard them as one entity for joint operation optimization. In this paper, a cooperative operation model of WF and HFSs based on cooperative game is established, and a benefit sharing method based on the contribution degree of energy trading in cooperation is proposed, which overcomes the shortcoming of too high computational complexity of Shapley value allocation when the scale of HFSs is large. Simulation results shows that the cooperation can greatly reduce the cost of HFSs and improve the operation benefit of WT. In addition, compared with the Shapley value method, the proposed it accelerates the calculation speed and improves the enthusiasm of energy interaction between players. In addition, compared with the Shapley value method, the proposed benefit allocation method accelerates the calculation speed and improves the enthusiasm of energy interaction between players.
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