基于拥塞博弈的智能电网分布式需求管理

C. Ibars, M. Navarro, L. Giupponi
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引用次数: 222

摘要

本文提出在智能电网基础设施中采用分布式负荷管理,通过动态定价策略来控制高峰时段的电力需求。我们提出的分布式解决方案基于网络拥塞博弈,可以证明在有限的步骤中收敛到纯纳什均衡解。我们利用了拥塞博弈的显著特性,根据这一特性,拥塞博弈等价于潜在博弈。我们定义了一个具有有意义的物理解释特征的势函数,从而得到了每个自私消费者的局部最优解也是全局目标的解的有利结果。我们评估了这种管理需求和电网负载的方法,并表明负载控制可以有效地实现分布式解决方案,从而显着减少网络上的信令负担。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Demand Management in Smart Grid with a Congestion Game
In this paper we propose distributed load management in smart grid infrastructures to control the power demand at peak hours, by means of dynamic pricing strategies. The distributed solution that we propose is based on a network congestion game, which can be demonstrated to converge in a finite number of steps to a pure Nash equilibrium solution. We take advantage of the remarkable property of congestion games, according to which they are equivalent to potential games. We define a potential function characterized by a meaningful physical interpretation, so that we obtain the favorable result that the optimal local solution of each selfish consumer is also the solution of a global objective. We evaluate this approach for managing both the demand and the grid load and we show that load control can be effectively achieved implementing a distributed solution, which significantly reduce the signaling burden over the network.
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