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Cooperative P2P Energy Trading in Active Distribution Networks: An MILP-Based Nash Bargaining Solution

机译:积极配送网络中的合作P2P能源交易:基于MILP的纳什议价解决方案

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摘要

This article proposes a cooperative energy market model for an active Distribution Network (DN) by using the theory of Generalized Nash Bargaining (GNB). The proposed energy market has three types of participants: the DN operator, buyers, and sellers. Two energy trading manners are allowed at the same time: 1) each of buyers/sellers trades energy with the DN operator; 2) buyers and sellers trade energy in a Peer-to-Peer (P2P) manner and pay network usage fees to the DN operator. In the market, the DN operator actively manages voltage and reactive power (Volt-VAR) via controlling on-load tap changers of transformers and shunt capacitors. The payments among participants are subject to price constraints. The GNB problem for the proposed market is formulated and then decomposed into two subproblems: social welfare maximization problem (P1) and energy trading problem (P2). Both P1 and P2 are nonconvex problems. Next, linearization techniques are employed and a grid propagation algorithm is developed, transforming P1 and P2 into their equivalent Mixed-Integer Linear Programming (MILP) problems. In simulation, the proposed market model is compared with other GNB-based market models. The results show that the proposed one can significantly increase social welfare through Volt-VAR control and also can maximize the extent of fairness of profit allocation under the price constraints.
机译:本文通过使用广泛的纳什议价理论(GNB)提出了一个有源分配网络(DN)的合作能源市场模型。拟议的能源市场有三种类型的参与者:DN运营商,买家和卖家。同时允许两种能源交易方式:1)买家/卖家每节与DN运营商交易能源; 2)买家和卖家以对等(P2P)方式的贸易能量,并向DN运营商支付网络使用费。在市场上,DN操作员通过控制变压器和分流电容器的负载分接开关主动地管理电压和无功(Volt-VAR)。参与者之间的付款受价格限制。制定了拟议市场的GNB问题,然后分解为两个子问题:社会福利最大化问题(P1)和能源交易问题(P2)。 P1和P2都是非渗透性问题。接下来,采用线性化技术,并开发网格传播算法,将P1和P2转换为它们等效的混合整数线性编程(MILP)问题。在仿真中,拟议的市场模型与其他基于GNB的市场模型进行了比较。结果表明,拟议的人可以通过伏局控制显着增加社会福利,并且还可以在价格限制下最大化利润分配的公平程度。

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