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A Stackelberg game-theoretic approach to optimal real-time pricing for the smart grid

机译:Stackelberg博弈论方法可为智能电网提供最佳实时定价

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This paper proposes a Stackelberg game approach to maximize the profit of the electricity retailer (utility company) and minimize the payment bills of its customers. The electricity retailer determines the retail price through the proposed smart energy pricing scheme to optimally adjust the real-time pricing with the aim to maximize its profit. The price information is sent to the customers through a smart meter. According to the announced price, the customers can automatically manage the energy use of appliances in the households by the proposed optimal electricity consumption scheduling system with the aim to minimize their electricity bills. We model the interactions between the retailer and its electricity customers as a 1-leader, N-follower Stackelberg game. At the leader's side, i.e., for the retailer, we adopt genetic algorithms to maximize its profit while at the followers' side, i.e., for customers, we develop an analytical solution to the linear programming problem to minimize their bills. Simulation results show that the proposed approach is beneficial for both the customers and the retailer.
机译:本文提出了一种Stackelberg博弈方法,以最大化电力零售商(公用事业公司)的利润并最小化其客户的支付账单。电力零售商通过拟议的智能能源定价方案确定零售价格,以最佳方式调整实时定价,以最大程度地提高其利润。价格信息通过智能仪表发送给客户。根据公布的价格,客户可以通过建议的最佳用电计划系统自动管理家庭中的电器能耗,以最大程度地减少电费。我们将零售商与电力客户之间的互动建模为1领导,N跟随者Stackelberg游戏。在领导者方面,即对于零售商,我们采用遗传算法来最大化其利润,而在追随者方面,即对于客户,我们针对线性规划问题开发一种分析解决方案,以最大程度地减少他们的账单。仿真结果表明,该方法对客户和零售商均有利。

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