首页> 外文会议>Innovative Smart Grid Technologies (ISGT), 2010 >Optimal and autonomous incentive-based energy consumption scheduling algorithm for smart grid
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Optimal and autonomous incentive-based energy consumption scheduling algorithm for smart grid

机译:基于最优和自主激励的智能电网能耗调度算法

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In this paper, we consider deployment of energy consumption scheduling (ECS) devices in smart meters for autonomous demand side management within a neighborhood, where several buildings share an energy source. The ECS devices are assumed to be built inside smart meters and to be connected to not only the power grid, but also to a local area network which is essential for handling two-way communications in a smart grid infrastructure. They interact automatically by running a distributed algorithm to find the optimal energy consumption schedule for each subscriber, with an aim at reducing the total energy cost as well as the peak-to-average-ratio (PAR) in load demand in the system. Incentives are also provided for the subscribers to actually use the ECS devices via a novel pricing model, derived from a game-theoretic analysis. Simulation results confirm that our proposed distributed algorithm significantly reduces the PAR and the total cost in the system.
机译:在本文中,我们考虑在智能仪表中部署智能电表中的能耗调度(ECS)设备在邻域内进行自主需求侧管理,其中几座建筑物共享能源。假设ECS器件内置在智能仪表内,并且不仅连接到电网,还可以连接到局域网,这对于处理智能电网基础架构中的双向通信至关重要。它们通过运行分布式算法来自动交互,以查找每个用户的最佳能耗计划,目的是降低系统中负载需求中的总能量成本以及峰值平均值(PAR)。还为订户提供了激励措施,以通过新颖的定价模型实际使用ECS设备,从而源自游戏理论分析。仿真结果证实,我们提出的分布式算法显着降低了系统中的标准杆和总成本。

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