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Optimal Decision-Making to Charge Electric Vehicles in Heterogeneous Networks: Stackelberg Game Approach

机译:异构网络中电动汽车充电的最佳决策:Stackelberg博弈方法

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摘要

Electric vehicles (EVs) are designed to improve the efficiency of energy and prevent the environment from being polluted, when they are widely and reasonably used in the transport system. However, due to the feature of EV’s batteries, the charging problem plays an important role in the application of EVs. Fortunately, with the help of advanced technologies, charging stations powered by smart grid operators (SGOs) can easily and conveniently solve the problems and supply charging service to EV users. In this paper, we consider that EVs will be charged by charging station operators (CSOs) in heterogeneous networks (Hetnet), through which they can exchange the information with each other. Considering the trading relationship among EV users, CSOs, and SGOs, we design their own utility functions in Hetnet, where the demand uncertainty is taken into account. In order to maximize the profits, we formulate this charging problem as a four-stage Stackelberg game, through which the optimal strategy is studied and analyzed. In the Stackelberg game model, we theoretically prove and discuss the existence and uniqueness of the Stackelberg equilibrium (SE). Using the proposed iterative algorithm, the optimal solution can be obtained in the optimization problem. The performance of the strategy is shown in the simulation results. It is shown that the simulation results confirm the efficiency of the model in Hetnet.
机译:电动汽车(EV)在交通运输系统中被广泛合理使用时,旨在提高能源效率并防止环境受到污染。但是,由于EV电池的特性,充电问题在EV的应用中起着重要作用。幸运的是,借助先进技术,由智能电网运营商(SGO)提供支持的充电站可以轻松便捷地解决问题,并为EV用户提供充电服务。在本文中,我们认为电动汽车将由异构网络(Hetnet)中的充电站运营商(CSO)充电,通过它们可以相互交换信息。考虑到EV用户,CSO和SGO之间的交易关系,我们在Hetnet中设计了自己的效用函数,其中考虑了需求不确定性。为了最大化利润,我们将此收费问题公式化为四阶段Stackelberg博弈,通过该博弈对最优策略进行研究和分析。在Stackelberg博弈模型中,我们从理论上证明和讨论了Stackelberg平衡(SE)的存在和唯一性。使用所提出的迭代算法,可以在优化问题中获得最优解。仿真结果显示了该策略的性能。结果表明,仿真结果证实了该模型在Hetnet中的有效性。

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