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Prioritizing Consumers in Smart Grid: A Game Theoretic Approach

机译:在智能电网中优先考虑消费者:一种博弈论方法

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This paper proposes an energy management technique for a consumer-to-grid system in smart grid. The benefit to consumers is made the primary concern to encourage consumers to participate voluntarily in energy trading with the central power station (CPS) in situations of energy deficiency. A novel system model motivating energy trading under the goal of social optimality is proposed. A single-leader multiple-follower Stackelberg game is then studied to model the interactions between the CPS and a number of energy consumers (ECs), and to find optimal distributed solutions for the optimization problem based on the system model. The CPS is considered as a leader seeking to minimize its total cost of buying energy from the ECs, and the ECs are the followers who decide on how much energy they will sell to the CPS for maximizing their utilities. It is shown that the game, which can be implemented distributedly, possesses a socially optimal solution, in which the sum of the benefits to all consumers is maximized, as the total cost to the CPS is minimized. Numerical analysis confirms the effectiveness of the game.
机译:本文提出了一种智能电网中用户到电网系统的能源管理技术。给消费者带来的好处是主要的关注点,以鼓励消费者在能源短缺的情况下自愿参与与中央电站(CPS)的能源交易。提出了一种以社会最优为目标的激励能源交易的系统模型。然后研究单领导者多跟随者Stackelberg博弈,以对CPS和多个能源消耗者(EC)之间的相互作用进行建模,并基于系统模型找到优化问题的最优分布式解决方案。 CPS被认为是寻求最大程度地减少从EC采购能源的总成本的领导者,而EC则是追随者,他们决定向CPS出售多少能源以最大化其效用。结果表明,可以分布式实施的游戏拥有一种社会最优的解决方案,其中,对CPS的总成本得以最小化,从而使所有消费者的利益之和最大化。数值分析证实了游戏的有效性。

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