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Distribution-Level Robust Energy Management of Power Systems Considering Bidirectional Interactions With Gas Systems

机译:考虑与天然气系统双向相互作用的电力系统的分配级鲁棒能量管理

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摘要

Due to increasing penetration of variable and uncertain distributed renewable generation, as well as stronger interdependency with gas systems facilitated by the deployment of gas-fired units and power-to-gas (P2G) facilities, the secure and economic energy management (EM) of the power distribution networks (PDNs) has become more challenging. Most existing works on the EM problem of the PDN either neglect the interactions of the PDN with other energy systems or aggregate them as one. In this paper, a tri-level model of the EM problem of the PDN is proposed, where the bidirectional physical and economic interactions with the gas system are considered. Specifically, the physical interaction is simulated by incorporating the gas system operation constraints, and the economic interaction is realized by modeling the gas contracting mechanism. A quadruple-loop solution procedure is developed for the proposed tri-level EM model, including two column-and-constraint (C&CG) loops for the two-stage decision-making framework, and two sequential mixed integer second-order cone program (S-MISOCP) loops to enhance the solution feasibility with respect to the nonconvex power flow and Weymouth equations. The effectiveness of the proposed model and solution methodology are verified by simulation results of several moderate test systems.
机译:由于可变和不确定的分布式可再生生成的渗透性增加,以及通过部署燃气单元和电力 - 天然气(P2G)设施,安全和经济能量管理(EM)促进的气体系统相互依赖性配电网络(PDNS)变得更具挑战性。 PDN的EM问题上的大多数现有工作忽略了PDN与其他能量系统的相互作用或将它们聚集为一个。在本文中,提出了一种PDN的EM问题的三级模型,其中考虑了与气体系统的双向物理和经济相互作用。具体地,通过结合气体系统操作约束来模拟物理相互作用,通过对气体收缩机制进行建模来实现经济相互作用。为所提出的三级EM模型开发了四循环解决方法,包括两个阶段决策框架的两个列和约束(C&CG)循环,以及两个顺序混合整数二阶锥形程序(S -Misocp)环路以增强相对于非透露功率流和韦茅斯方程的解决方案可行性。所提出的模型和解决方案方法的有效性通过几种中等测试系统的仿真结果来验证。

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