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Feasibility of using discriminate pricing schemes for energy trading in smart grid

机译:在智能电网中使用区分定价方案进行能源交易的可行性

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This paper investigates the feasibility of using a discriminate pricing scheme to offset the inconvenience that is experienced by an energy user (EU) in trading its energy with an energy controller in smart grid. The main objective is to encourage EUs with small distributed energy resources (DERs), or with high sensitivity to their inconvenience, to take part in the energy trading via providing incentive to them with relatively higher payment at the same time as reducing the total cost to the energy controller. The proposed scheme is modeled through a two-stage Stackelberg game that describes the energy trading between a shared facility authority (SFA) and EUs in a smart community. A suitable cost function is proposed for the SFA to leverage the generation of discriminate pricing according to the inconvenience experienced by each EU. It is shown that the game has a unique sub-game perfect equilibrium (SPE), under the certain condition at which the SFA's total cost is minimized, and that each EU receives its best utility according to its associated inconvenience for the given price. A backward induction technique is used to derive a closed form expression for the price function at SPE, and thus the dependency of price on an EU's different decision parameters is explained for the studied system. Numerical examples are provided to show the beneficial properties of the proposed scheme.
机译:本文研究了使用区分定价方案来弥补能源用户(EU)与智能电网中的能源控制器进行能源交易时所遇到的不便之处的可行性。主要目标是鼓励分布较小的分布式能源(DER)或对其不便高度敏感的欧盟,通过向他们提供较高奖励的激励措施来参与能源贸易,同时降低总成本。能量控制器。拟议的方案通过两阶段Stackelberg博弈模型进行建模,该博弈描述了智能社区中共享设施管理局(SFA)与EU之间的能源交易。为SFA提出了一个合适的成本函数,以根据每个欧盟遇到的不便利用区分价格的产生。结果表明,该游戏在特定条件下具有独特的子游戏完美平衡(SPE),在该条件下SFA的总成本降至最低,并且每个欧盟根据给定价格带来的不便而获得了最佳效用。使用后向归纳技术来导出SPE价格函数的闭式表达式,因此,对所研究的系统解释了价格对欧盟不同决策参数的依赖性。数值例子提供了所提出方案的有益特性。

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