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首页> 外文期刊>Journal of Energy Storage >Stochastic framework for day-ahead scheduling of coordinated electricity and natural gas networks considering multiple downward energy hubs
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Stochastic framework for day-ahead scheduling of coordinated electricity and natural gas networks considering multiple downward energy hubs

机译:考虑多个向下能量枢纽的协调电力和天然气网络的一天提前调度随机框架

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The integrated operation of electricity and gas networks in the presence of downward energy hub networks leads to the development of smarter and more environment-friendly networks. This paper presents an optimal model for the day-ahead scheduling of electricity and natural gas networks by considering three downward energy hubs and a power-to-gas system (P2G). The system studied in this paper consists of a 33-bus distribution electricity network and a 14-node gas network. Moreover, the uncertainties of the electrical, cooling, heating loads, the renewable energy sources (RES' s) output power, and price are taken into account to study their effects on the scheduling results. In the proposed model, first, each hub performs its optimal day-ahead scheduling and sends it to the ISO. Afterward, the ISO performs the scheduling of electricity and natural gas networks considering the optimal schedule of each hub. The final problem is modeled as a mixed-integer non-linear programming (MINLP) problem and is solved using the DICOPT solver in GAMS software. According to our analysis of the results, the proposed model reduces the operation costs by 5.1 and 4.8 percent in the deterministic and stochastic modes, respectively. Moreover, our analysis of the results in the contingent event reflects the loss of about 1429kW of the load in the absence of the P2G system.
机译:在向下能量中心网络存在下电力和天然气网络的综合运行导致更智能和更环保的网络的发展。本文通过考虑三个向下能量枢纽和燃气系统(P2G)来提高电力和天然气网络的日历调度最佳模型。本文研究的系统包括33总线分配电网和14节点气体网络。此外,考虑了电气,冷却,加热载荷,可再生能源(RES)输出功率和价格的不确定性,以研究它们对调度结果的影响。在所提出的模型中,首先,每个集线器执行其最佳的一天 - 前方调度并将其发送到ISO。之后,ISO考虑每个集线器的最佳时间表执行电力和天然气网络的调度。最终问题被建模为混合整数非线性编程(MINLP)问题,并在GAMS软件中使用DICOPT Solver进行解决。根据我们对结果的分析,所提出的模型分别将运行成本降低5.1%和4.8%,分别在确定性和随机模式中。此外,我们对缺点事件中的结果分析反映了在没有P2G系统的情况下减少约1429kW的负荷。

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