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Bidding-Based Dynamic Power Pricing Scheme in Smart Grids

机译:智能电网中基于竞价的动态电力定价方案

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The distributed, user-specific, bidirectional communication promised by smart grids allows for novel improvements to the current power grid's naive power allocation and pricing strategies. We present a modeling framework for a smart microgrid power system which employs a bidding mechanism to distribute power efficiently and intelligently to residential houses, which are in turn modeled as smart homes with smart appliances. We model the power demand within these smart homes using queuing theory. We provide an algorithm that guarantees the houses' powers (which are a function of the houses' bids), to converge to the unique game-theoretic optimal power allocation (i.e. Nash equilibrium). We present numerical simulations in several different regimes to highlight the convergence properties.
机译:智能电网承诺的分布式,特定于用户的双向通信可以对当前电网的朴素电源分配和定价策略进行新颖的改进。我们提出了一种智能微电网系统的建模框架,该系统采用了一种竞标机制,可以高效,智能地为住宅供电,而住宅则被建模为带有智能设备的智能家居。我们使用排队理论对这些智能家居中的电力需求进行建模。我们提供了一种算法,可确保房屋的权力(房屋的出价的函数)收敛到唯一的博弈论最优权力分配(即纳什均衡)。我们在几种不同的方案中提出数值模拟,以突出收敛性。

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