Integrated Planning of Urban Electricity and Gas Distribution Systems Considering Demand Response

Ke Sun, Chun Li, Ji Wu, Chengcheng Shao
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Abstract

In this paper, we developed an optimal planning model for an integrated urban energy system in order to explore the potential for integrated operation between different energy forms. Both the respective modes of operation of the grid and the natural gas network are considered, as well as the application of coupling units and demand response. Nonlinearities in the operation of the energy network are handled by the piecewise linearization methods. Therefore, a mixed-integer linear planning (MILP) model is developed that can be efficiently solved by existing solvers. A case study of 26 electric nodes and 20 gas node systems is conducted to validate the effectiveness of the method. The case results show that the integrated demand response can reduce system cost and improve the load curve.
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考虑需求响应的城市配电系统综合规划
本文建立了城市综合能源系统的优化规划模型,以探索不同能源形式之间的综合运行潜力。考虑了电网和天然气网各自的运行方式,以及耦合单元和需求响应的应用。采用分段线性化方法处理能量网络运行中的非线性问题。为此,本文建立了一种混合整数线性规划模型,该模型可被现有的求解器高效求解。以26个电节点和20个气节点系统为例,验证了该方法的有效性。算例结果表明,综合需求响应可以降低系统成本,改善负荷曲线。
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