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Demand-side management in smart grids: An evolutionary games perspective

机译:智能电网中的需求侧管理:演化游戏的观点

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In the context of smart energy grids, demand-side management refers to the ability of dynamically controlling and scheduling energy-consuming tasks. In one potential deployment scenario, smart appliances are controlled by a local intelligent software agents, which implement a given optimization algorithm for scheduling such tasks. The higher the fraction of users adopting such technology, the higher the advantage for the energy operator, due to the ability to control load curve and smooth peaks. At the same time, single users may incur some penalties, related to the fact that energy-consuming tasks may be deferred, thereby causing inconveniences. In this paper we take a game-theoretical perspective at demand-side management techniques. Tools and solution concepts from evolutionary games are employed: we are interested in the dynamics of the adoption of demand-side management schemes by intelligent software agents. We focus on distributed control schemes that can be enforced by the operator through pricing schemes. Agent-based numerical simulations are provided to validate our theoretical results.
机译:在智能能源网格中,需求侧管理是指动态控制和调度耗能任务的能力。在一个潜在的部署方案中,智能设备由本地智能软件代理控制,该代理实现用于调度此类任务的给定优化算法。由于能够控制负载曲线和平滑峰值,因此采用这种技术的用户比例越高,对于能源运营商的优势就越高。同时,单个用户可能会受到一些处罚,这与可能会延迟耗能的任务,从而带来不便。在本文中,我们从需求侧管理技术的博弈论角度出发。使用了来自演化游戏的工具和解决方案概念:我们对智能软件代理采用需求方管理方案的动态变化感兴趣。我们专注于可以由运营商通过定价方案实施的分布式控制方案。提供基于代理的数值模拟以验证我们的理论结果。

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