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A Stackelberg Game Theoretic Approach for Optimal Electricity Pricing Dynamics employing Time-of-Use Algorithm

机译:一种采用使用时间算法的最佳电力定价动力学的Stackelberg游戏理论方法

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Efficient utilization of resources is required in many scenarios which are facilitated by appropriate decision processes. For a problem requiring satisfaction of multiple objectives by different agents in a complex system, game theory helps to resolve such issues. Exploiting the structure of a model presents various avenues to implement games signifying the impact of the topology of the network. In hierarchical structures, there are established designations of leaders and followers among the agents. For the electricity pricing market, the noted players are the Utility Companies (UCs) and the users. A Stackelberg game theoretic approach is implemented in the market to find an equilibrium between the UCs and the users. The UCs prefer to keep the user load consumption profile as close to the nominal demand. The goal is to accomplish an equilibrium via stimulus to regulate user behaviour i.e. user load profile, through Time-of-Use (ToU) pricing. The negotiation of load consumption and the quoted price fits within the mould of the leader-follower game. The paper shows that both parties benefit through the Time-of-Use pricing algorithm while providing an optimal response to each other's actions.
机译:在许多情况下,需要有效利用资源,这是通过适当的决策过程促进的。对于需要在复杂系统中满足不同代理的多种目标的问题,游戏理论有助于解决这些问题。利用模型的结构呈现各种途径,以实现游戏表示网络拓扑的影响。在等级结构中,在代理商中建立了领导者和粉丝的指定。对于电力定价市场,所指出的球员是公用事业公司(UCS)和用户。在市场中实施了Stackelberg游戏理论方法,在UCS和用户之间找到均衡。 UCS更倾向于将用户负载消耗概况保持接近标称需求。目标是通过刺激实现均衡来调节用户行为,即用户负载简介,通过使用时间(tou)定价。负载消耗的谈判与引用的价格适合领导者跟随游戏的模具。本文表明,双方都通过使用时间的定价算法来利益,同时为彼此的动作提供最佳响应。

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