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A Real-Time Information Based Demand-Side Management System in Smart Grid

机译:基于实时信息的需求方 智能电网管理系统

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摘要

In this paper, we study a real-time information based demand-side management (DSM) system with advanced communication networks in smart grid. DSM can smooth peakto- average ratio (PAR) of power usage in the grid, which in turn reduces the waste of fuel and the emission of greenhouse gas. We first target to minimize PAR with a centralized scheme. To motivate power suppliers, we further propose another centralized scheme targeting minimum power generation cost. However, customers may not be motivated by a centralized scheme since such a scheme requires total control and privacy from them. A centralized scheme also requires too much real-time data exchange for frequent DSM deployment. To tackle these issues, we propose game theoretical approaches so that most of the computation is performed locally. In the proposed game, all the customers are motivated by extra savings if participating. Moreover, we prove that all parties benefit from the DSM system to the same level because both the centralized schemes and the game theoretical approach minimize global PAR. Such an analysis is further demonstrated by the simulation results and discussions. Additionally, we evaluate the performance of several (partially) distributed approaches in order to find the best way to deploy DSM system.
机译:在本文中,我们研究了智能电网中具有高级通信网络的基于实时信息的需求侧管理(DSM)系统。 DSM可以平滑电网中用电的峰均比(PAR),从而减少燃料浪费和温室气体排放。我们的首要目标是采用集中式方案来最大程度地降低PAR。为了激励电力供应商,我们进一步提出了另一个针对最低发电成本的集中式方案。但是,客户可能不会受到集中式方案的激励,因为这样的方案需要完全控制和隐私。对于频繁的DSM部署,集中式方案还需要太多的实时数据交换。为了解决这些问题,我们提出了博弈论方法,以便大多数计算在本地进行。在建议的游戏中,如果参与,所有客户都会受到额外节省的激励。此外,我们证明了所有各方都可以从DSM系统中受益,因为集中化方案和博弈论方法都可以使全局PAR最小化。仿真结果和讨论进一步证明了这种分析。此外,我们评估了几种(部分)分布式方法的性能,以便找到部署DSM系统的最佳方法。

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