General Synergic and Distributed Planning Models of Natural Gas and Electricity Systems and Integrated Energy Systems

A. Xuan, Jing Xiao, Puming Xu
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Abstract

Integrated energy system coupling with multi-energy devices, energy storage systems, and renewable energy systems is regarded as one of the most promising solutions for future energy systems. A general synergic planning model considering expansion of electricity system, natural gas system, and interior structure and site selection of integrated energy systems is proposed in this paper. Moreover, the joint planning model is decomposed into three planning sub-problems to represent different ownerships of the three agents, and the alternating direction method of multipliers (ADMM) is adopted to solve the tripartite distributed planning problem. Finally, the effectiveness of the planning method is verified on the updated version of IEEE RTS 24-bus electric system, Belgian 20-node natural gas system, and two assumed integrated energy systems.
天然气和电力系统及综合能源系统的一般协同和分布式规划模型
与多能装置、储能系统和可再生能源系统相结合的集成能源系统被认为是未来能源系统最有前途的解决方案之一。本文提出了考虑电力系统、天然气系统扩容和综合能源系统内部结构及选址的综合协同规划模型。将联合规划模型分解为三个规划子问题,分别表示三个智能体的不同所有权,并采用乘数交替方向法(ADMM)求解三方分布式规划问题。最后,在更新版的IEEE RTS 24总线电力系统、比利时20节点天然气系统和两种假设的综合能源系统上验证了规划方法的有效性。
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