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The optimal configuration planning of energy hubs in urban integrated energy system using a two-layered optimization method

机译:一种使用双层优化方法城市集成能源系统能源集线器的最佳配置规划

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In the modern metropolitan regions, the coupling among distribution networks (DNs), gas networks (GNs), and transportation networks (TNs) is increasingly intensified, which gives rise to the urgent demand for efficient modeling and solving methods. In this context, a mathematical model for the configuration planning of integrated energy systems is proposed in this paper. With the aim of minimizing total planning costs, the model jointly considers the investment and operation strategies for distribution lines, distributed wind power generators (DWGs), combined heat and power units (CHPs), power to gas units (P2Gs), gas furnaces (GFs), fast charging facilities (FCFs) and slow charging facilities (SCFs). Since the proposed model comes down to a non convex and nonlinear optimization problem, a two-layer algorithm is designed to solve it. In the outer layer, a genetic algorithm (GA) is performed to obtain a set of individuals representing the investment decisions on distribution lines, DWGs, and FCFs, which will be delivered to the inner layer model. With fixed decision variables, the inner model optimizes the operating costs, charging profit coefficients, and strategies for DWGs and energy converters in a coordinated manner. A real urban area in China is employed in the numerical experiment, which corroborates the effectiveness of the proposed model and solution algorithm.
机译:在现代大都市区中,分发网络(DNS),气体网络(GNS)和运输网络(TNS)之间的耦合越来越强化,这引起了对有效建模和解决方法的迫切需求。在本文中,本文提出了一种用于集成能量系统配置规划的数学模型。目的是最大限度地减少总规划成本,该模型共同考虑了分销线,分布式风力发电机(DWGS),综合发电机(CHPS),燃气装置(P2GS),燃气炉( GFS),快速充电设施(FCF)和慢充电设施(SCFS)。由于所提出的模型归结为非凸和非线性优化问题,因此设计了一种双层算法来解决它。在外层中,执行遗传算法(GA)以获得代表分发线,DWG和FCFS上的投资决策的一组个体,其将被传送到内层模型。通过固定决策变量,内模型以协调的方式优化DWGS和能量转换器的运营成本,充电利润系数和策略。在数值实验中使用中国真正的城市地区,其证实了提出的模型和解决方案算法的有效性。

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