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Game theory-based bi-level pricing scheme for smart grid scheduling control algorithm

机译:基于博弈论的智能电网调度控制算法双层定价方案

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摘要

Smart grid (SG) technology is now elevating the conventional power grid system to one that functions more cooperatively, responsively, and economically. When applied in an SG the demand side management (DSM) technique can improve its reliability by dynamically changing electricity consumption or rescheduling it. In this paper, we propose a new SG scheduling scheme that uses the DSM technique. To achieve effective SG management, we adopt a mixed pricing strategy based on the Rubinstein-Stahl bargaining game and a repeated game model. The proposed game-based pricing strategy provides energy routing for effective energy sharing and allows consumers to make informed decisions regarding their power consumption. Our approach can encourage consumers to schedule their power consumption profiles independently while minimizing their payment and the peak-to-average ratio (PAR). Through a simulation study, it is demonstrated that the proposed scheme can obtain a better performance than other existing schemes in terms of power consumption, price, average payment, etc.
机译:现在,智能电网(SG)技术正在将传统的电网系统提升为一种功能更强大,协作性更高,响应更经济的系统。当应用在SG中时,需求侧管理(DSM)技术可以通过动态更改用电量或重新安排用电时间来提高其可靠性。在本文中,我们提出了一种使用DSM技术的新SG调度方案。为了实现有效的销售管理,我们采用基于鲁宾斯坦-斯塔尔讨价还价博弈和重复博弈模型的混合定价策略。所提出的基于游戏的定价策略可提供能量路由以实现有效的能量共享,并允许消费者就其功耗做出明智的决策。我们的方法可以鼓励消费者独立安排功耗曲线,同时最大程度地减少其付款和峰均比(PAR)。通过仿真研究表明,该方案在功耗,价格,平均付款等方面均能比其他现有方案获得更好的性能。

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