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Optimal operation management of distributed and centralized electrolysis- based hydrogen generation and storage systems

机译:分布式和集中电解氢生成和储存系统的最优运行管理

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The interest in producing hydrogen from electricity has been recently identified as a potential means for large-scale energy storage, proliferation of hydrogen mobility, and decarbonization of several processes that require hydrogen. Such interest is growing due to the increase of the renewable energy penetration levels and the significant drop in their costs. The rollout of hydrogen-based applications increases the global demand for hydrogen and thus necessitates the deployment of reliable and cost-effective hydrogen infrastructure, i.e., generation, storage, and delivery. Based on its application, hydrogen fuel could be generated and stored in either distributed onsite or centralized offsite compositions. Yet, the operation of both distributed and centralized electrolysis-based hydrogen generation and storage systems (eHGSS) needs to be optimally managed not only to supply the hydrogen demand but also to provide appropriate services to improve the flexibility of power grids. To that end, this paper aims to develop a unified formulation for the optimal operation management of distributed and centralized eHGSS. The objective of the developed formulation is to maximize the net revenue of eHGSS via sale of the produced hydrogen and participation in the provision of multiple grid's ancillary services. The developed optimization model is utilized to conduct qualitative techno-economic analysis for the two composition forms of eHGSS, i.e., centralized and distributed. The applications of the two arrangements under various operating scenarios including sole services to the hydrogen market and concurrent ancillary services provision to an electricity market are numerically investigated. These studies are significantly valuable to private investors and grid operators that would like to assess the techno-economic variability of distributed and centralized eHGSS. The superiority of the proposed operation management model has been substantiated with numerical investigation, discussions, and analysis.
机译:最近将来自电力产生氢的兴趣被鉴定为大规模能量储存,氢气迁移性的潜在装置,以及需要氢的几种方法的脱碳。由于可再生能源渗透率的增加和成本显着下降,这种兴趣正在增长。氢化氢的应用程序增加了全球对氢的需求,因此需要进行可靠且具有成本效益的氢基础设施,即,发电,存储和交付。基于其应用,可以产生氢燃料并储存在分布的现场或集中的异地组合物中。然而,需要最佳地管理分布式和集中电解的氢气生成和储存系统(EHGSS)的操作,而不仅要提供氢气需求,而且还提供适当的服务以提高电网的灵活性。为此,本文旨在为分布式和集中式EHGSS的最佳运行管理制定统一的制定。发达制定的目标是通过销售生产的氢气和参与提供多个网格的辅助服务的净收入来最大限度地提高EHGSS的净收入。开发的优化模型用于对EHGSS的两种组成形式进行定性技术经济分析,即集中和分布。在数值调查了各种操作情景下的两种安排的申请,包括授权服务以及向电力市场提供给电力市场的同时服务。这些研究对于私人投资者和网格运营商来说,这些研究非常有价值,以评估分布式和集中式EHGSS的技术经济变异性。通过数值调查,讨论和分析,所提出的操作管理模式的优势已经证实。

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