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Integration mechanisms for LQ energy day-ahead market based on demand response

机译:基于需求响应的LQ能源日前市场整合机制

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Demand side management (DSM) has been studied to optimize the demand side of energy networks, which leads to maximization of social welfare. Methods of DSM usually require exchanges of true information used in the optimization process including private information, but in general market participants are not willing to reveal their private information. In a competitive society, each consumer's selfish behavior could generally disturb the maximization of the whole network's benefit. In this paper, we describe a concrete model for consumers, and formulate a dynamic linear quadratic (LQ) energy demand network in which a day-ahead market based on demand response is formed, and apply two kinds of optimization-based mechanisms inspired by mechanism design theory from economics literature. One is the Vickrey-Clarke-Groves (VCG) type mechanism, which is ex post incentive compatible and individually rational. The other is the d'Aspremont and Gérard-Varet and Arrow (AGV) type mechanism, which is interim incentive compatible and budget balanced. These mechanisms require the utility company to design an incentive cost (transfer), so that the rational consumption schedules of consumers based on their own benefits lead to the whole network's maximum benefit. Through numerical experiment, we demonstrate effectiveness of the mechanisms.
机译:已经研究了需求侧管理(DSM),以优化能源网络的需求侧,这导致了社会福利的最大化。 DSM方法通常需要交换在优化过程中使用的真实信息,包括私人信息,但一般而言,市场参与者不愿意透露其私人信息。在竞争激烈的社会中,每个消费者的自私行为通常会干扰整个网络利益的最大化。在本文中,我们为消费者描述了一个具体模型,并构建了一个动态线性二次(LQ)能源需求网络,在该网络中形成了基于需求响应的超前市场,并应用了两种基于机制的基于优化的机制经济学文献中的设计理论。一种是Vickrey-Clarke-Groves(VCG)类型的机制,它是事后激励兼容且个体合理的。另一个是d'Aspremont和Gérard-Varetand Arrow(AGV)类型的机制,该机制与临时激励兼容且预算平衡。这些机制要求公用事业公司设计激励成本(转移),以便基于消费者自身利益的消费者合理的消费计划会导致整个网络的最大利益。通过数值实验,我们证明了该机制的有效性。

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