论文标题

考虑到多功能区域的热量需求差异的集成能源系统的基于stackelberg游戏的最佳计划

Stackelberg game-based optimal scheduling of integrated energy systems considering differences in heat demand across multi-functional areas

论文作者

Wang, Limeng, Yang, Ranran, Qu, Yang, Xu, Chengzhe

论文摘要

需求侧管理在中国能源系统中至关重要,因为其化石能源消耗高和系统能源效率低。在描述不同功能区域的建筑特性时引入了建筑形状因子,这些功能区域与用户消耗的能量的特征相结合,以研究不同功能区域的加热负荷的特征。为电热综合能源系统提出了基于Stackelberg游戏的最佳调度模型,该模型旨在最大程度地提高综合能源运营商(IEO)的收入并最大程度地减少用户的成本。在这里,IEO和用户分别是Stackelberg游戏的领导者和追随者。领导者使用实时能源价格来指导负载以参与需求响应,而追随者则根据价格反馈制定能源计划。使用Karush-Kuhn-Tucker(KKT)条件和Big-M方法,该模型被转换为混合智能二次编程(MIQP)问题,该问题通过使用MATLAB和CPLEX软件来解决。结果表明,该提案设法平衡了IEO和用户的利益。此外,可以根据能源消耗和建立形状特征的差异来分别管理公共和住宅区的加热负荷,从而改善系统的运行灵活性并促进可再生能源消耗。

Demand-side management is very critical in China's energy systems because of its high fossil energy consumption and low system energy efficiency. A building shape factor is introduced in describing the architectural characteristics of different functional areas, which are combined with the characteristics of the energy consumed by users to investigate the features of heating load in different functional areas. A Stackelberg game-based optimal scheduling model is proposed for electro-thermal integrated energy systems, which seeks to maximize the revenue of integrated energy operator (IEO) and minimize the cost of users. Here, IEO and users are the Stackelberg game leader and followers, respectively. The leader uses real-time energy prices to guide loads to participate in demand response, while the followers make energy plans based on price feedback. Using the Karush-Kuhn-Tucker (KKT) condition and the big-M method, the model is transformed into a mixed-integer quadratic programming (MIQP) problem, which is solved by using MATLAB and CPLEX software. The results demonstrate that the proposal manages to balance the interests of IEO and users. Furthermore, the heating loads of public and residential areas can be managed separately based on the differences in energy consumption and building shape characteristics, thereby improving the system operational flexibility and promoting renewable energy consumption.

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