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Bi-level Low-Carbon Optimal Dispatch Model for P2G Plant Within Power and Natural Gas Markets

机译:P2G工厂的双级低碳最优调度模型和天然气市场

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The power-to-gas (P2G) plant plays a significant role in improving the renewable penetration and hydrogen utilization. This paper proposes a bi-level low-carbon optimal dispatch model for the P2G plant within the power and natural gas markets. The upper-level model presents the optimal dispatch strategy of the P2G plant with a multi-operation-state model of methane reactor (MR) and a multi-mode model of hydrogen storage (HS). The lower level aims at maximizing social benefits, considering the operational constraints of power and natural gas networks and market clearing. In addition, carbon trading is further considered in both levels to characterize the function of the P2G plant in the low-carbon economy. In the model solution, the optimal condition of the lower-level model can be expressed by Karush-Kuhn-Tucker (KKT) conditions, and then the bi-level optimization model is transformed into a mathematical program with equilibrium constraints (MPEC). A case study is performed to show the effectiveness of this model.
机译:能量 - 天然气(P2G)植物在改善可再生渗透和氢利用方面起着重要作用。本文为电力和天然气市场内的P2G工厂提出了一种双级低碳最佳调度模型。上层模型具有P2G工厂的最佳调度策略,具有多功能状态模型的甲烷反应器(MR)和储氢(HS)的多模型号。考虑到电力和天然气网络和市场清算的运作限制,较低的级别旨在最大限度地提高社会效益。此外,碳交易在两种水平中进一步考虑,以表征P2G工厂在低碳经济中的功能。在模型解决方案中,较低级模型的最佳条件可以由Karush-Kuhn-Tucker(KKT)条件表示,然后将双级优化模型转换为具有均衡约束(MPEC)的数学程序。进行案例研究以显示该模型的有效性。

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