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A mathematical modeling technique with network flows for social welfare maximization in deregulated electricity markets

机译:在管制放松的电力市场中利用网络流量实现社会福利最大化的数学建模技术

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This paper presents a sequential solution method to discover efficient trades in an electricity market model. The market model represents deregulated electricity market consisting of four types of participants: independent power producers, retailers, public utilities, and consumers. Our model is based on graph theory, and the market participants are denoted by a network composes of three types of agents including sellers, buyers, and traders. The market participants have different capacity and demand of electricity from each other, and each electricity trade should satisfy the capacity and demand. Our sequential solution method can discover efficient electricity trades satisfying the constraints regarding capacity and demand by utilizing network flow. Simulation results demonstrate the efficiency of electricity trades determined by our method by examining social welfare, which is the total of payoffs of all market participants. Furthermore, the simulation results also indicate the allocation of payoff to each market participant.
机译:本文提出了一种顺序解决方法,以发现电力市场模型中的有效交易。市场模型代表放松管制的电力市场,包括四种类型的参与者:独立的电力生产商,零售商,公用事业和消费者。我们的模型基于图论,并且市场参与者由网络的三种类型的代理商组成,包括卖方,买方和交易商。市场参与者彼此之间具有不同的电力容量和需求,并且每次电力交易都应满足该容量和需求。我们的顺序解决方法可以利用网络流量发现满足容量和需求约束的有效电力交易。仿真结果通过检查社会福利(即所有市场参与者的总收益)来证明通过我们的方法确定的电力交易的效率。此外,仿真结果还表明了每个市场参与者的收益分配。

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