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首页> 外文期刊>Journal of Cleaner Production >A two-stage planning and optimization model for water - hydrogen integrated energy system with isolated grid
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A two-stage planning and optimization model for water - hydrogen integrated energy system with isolated grid

机译:水 - 氢综合能源系统的两阶段规划与优化模型

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摘要

To realize the vision of "carbon neutrality" in China, the use of clean energy and hydrogen energy storages can be integrated to optimize the structure of power systems and ensure safe, stable, and low-carbon operation of power. However, the current cost of hydrogen production is primarily associated to the high price of electricity, and the construction of an integrated energy system is a promising approach to solve this problem. In this study, a solitary grid energy system that integrates water and hydrogen has been developed, which consists of a hydroelectric power station, hydrogen production equipment, a hydrogen storage device, and a fuel cell. Furthermore, a two-layer programming model is designed. The upper layer is aimed at minimizing the construction cost to improve the hydrogen production capacity, hydrogen storage, fuel cell performance, and other facilities. Meanwhile, the lower layer is aimed at minimizing the decrease in daily operations to optimize the utilization of all the facilities in the integrated energy system under different scenarios. The Asynchronous Advantage Actor-Critic (A3C) reinforcement learning algorithm and Gurobi are used to solve the model. The results of typical scenarios show that the water-hydrogen integrated energy system saves water resources, maintains the stability of electric power, and provides improved economic benefits than those offered by single hydroelectric systems, thereby increasing the overall resource, social, and economic values of the system.
机译:为了实现中国“碳中立性”的愿景,可以集成使用清洁能源和氢能储存,以优化电力系统的结构,确保安全,稳定,低碳运转。然而,目前氢气生产成本主要与电力价格相关,综合能源系统的建设是解决这个问题的有希望的方法。在该研究中,已经开发了一种整合水和氢的孤立网格能量系统,其包括水力发电站,氢生产设备,储氢装置和燃料电池。此外,设计了双层编程模型。上层旨在最大限度地减少构建成本,以改善氢生产能力,储氢,燃料电池性能和其他设施。同时,下层旨在最大限度地减少日常操作的降低,以优化在不同场景下集成能量系统中所有设施的利用率。异步优势演员 - 评论家(A3C)强化学习算法和Gurobi用于解决模型。典型情景的结果表明,水 - 氢综合能量系统节省了水资源,保持了电力的稳定性,并提供了优于单水电系统提供的经济效益,从而增加了整体资源,社会和经济价值系统。

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