Decentralized Peer-to-Peer Energy Trading Model for Networked Microgrids

Jonathan Warner, T. Masaud
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引用次数: 3

Abstract

Energy trading among networked microgrids can be an effective tool to achieve reliability and economic benefits. This paper proposes a two stage Peer-to-Peer (P2P) energy trading model consisting of a local scheduling optimization problem in stage one and an energy trading price adjustment mechanism in stage two. In this study, it was assumed that all networked microgrids are connected to the utility grid and to each other. However, the amount of power that can be exchanged with the utility grid is limited by the tie-line maximum capacity; hence, the trading scheme is developed for energy trading between the networked microgrids to satisfy their deficit and surplus power that cannot be exchanged with the utility grid due to tie-line limit. Simulation is conducted to validate the proposed model using a 24-hour forecasted net load data for seven networked microgrids.
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网络化微电网分散式点对点能源交易模型
网络化微电网之间的能源交易是实现可靠性和经济效益的有效手段。本文提出了一个两阶段的P2P能源交易模型,该模型包括第一阶段的局部调度优化问题和第二阶段的能源交易价格调整机制。在本研究中,假设所有联网微电网都连接到公用电网并相互连接。然而,可以与公用电网交换的电量受到联络线最大容量的限制;为此,本文提出了一种用于联网微电网之间能源交易的交易方案,以满足微电网因联络线限制而无法与公用电网交换的亏余电力。利用7个联网微电网的24小时预测净负荷数据进行了仿真,以验证所提出的模型。
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