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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Integration of power-to-hydrogen in day-ahead security-constrained unit commitment with high wind penetration
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Integration of power-to-hydrogen in day-ahead security-constrained unit commitment with high wind penetration

机译:将氢能发电集成到日前安全受限的机组承诺中,并具有高风速

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The increasing integration of variable wind generation has aggravated the imbalance between electricity supply and demand. Power-to-hydrogen (P2H) is a promising solution to balance supply and demand in a variable power grid, in which excess wind power is converted into hydrogen via electrolysis and stored for later use. In this study, an energy hub (EH) with both a P2H facility (electrolyzer) and a gas-to-power (G2P) facility (hydrogen gas turbine) is proposed to accommodate a high penetration of wind power. The EH is modeled and integrated into a security-constrained unit commitment (SCUC) problem, and this optimization problem is solved by a mixed-integer linear programming (MILP) method with the Benders decomposition technique. Case studies are presented to validate the proposed model and elaborate on the technological potential of integrating P2H into a power system with a high level of wind penetration (HWP).
机译:可变风力发电的日益融合加剧了电力供需之间的不平衡。氢气制氢(P2H)是在可变电网中平衡供需的一种有前途的解决方案,在该电网中,多余的风能通过电解转化为氢气,并存储起来以备后用。在这项研究中,提出了同时具有P2H设施(电解器)和气电(G2P)设施(氢气燃气轮机)的能源枢纽(EH),以适应风能的高渗透率。对EH进行建模并将其集成到安全约束的单位承诺(SCUC)问题中,并通过采用Benders分解技术的混合整数线性规划(MILP)方法解决此优化问题。通过案例研究来验证所提出的模型,并详细说明将P2H集成到具有高风速(HWP)的电力系统中的技术潜力。

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