Auction based energy trading in transactive energy market with active participation of prosumers and consumers

M. Khorasany, Yateendra Mishra, G. Ledwich
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引用次数: 44

Abstract

This paper proposes a Transactive Energy Market (TEM) platform for Peer-to-Peer (P2P) energy trading among prosumers and consumers in the Transactive environment. Prosumers with excess energy participate in the market as seller and consumers play a buyer role and communicate with each other to maximize their welfare, which is the difference between their benefit and cost. The proposed platform is an hour-ahead market, where market subscribers join to trade energy for the next hour. Market clearing is performed using auction approach and a double auction with average mechanism is applied to determine allocation and price of energy. In this platform, market subscribers pay a Subscription Charge (SC) for utilizing the distribution network and this charge is used as a price signal to reduce the possibility of overload in the network's lines. Power Transfer Distributed Factor (PTDF) is used to calculate SC by incorporating network topology and the distributed nature of prosumers and consumers. Simulation results on a simple IEEE 13 node distribution network with 10 subscribers (5 buyers and 5 sellers) demonstrate the efficacy of the proposed TEM platform and market clearing mechanism.
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在互动式能源市场中,生产消费者和消费者都积极参与以拍卖为基础的能源交易
本文提出了一个交易能源市场(TEM)平台,用于在交易环境中生产消费者和消费者之间的点对点(P2P)能源交易。具有多余能量的生产消费者以卖方的身份参与市场,而消费者则以买方的身份参与市场,并相互沟通,使自己的福利最大化,这就是他们的收益与成本之差。拟议中的平台是一个小时前市场,市场订户加入下一个小时的能源交易。采用拍卖方式进行市场出清,采用具有平均机制的双拍卖方式确定能源分配和价格。在这个平台中,市场用户为使用配电网支付订阅费(SC),这笔费用被用作价格信号,以减少电网线路过载的可能性。电力传输分布因子(PTDF)结合网络拓扑结构和产消者和消费者的分布式特性来计算SC。在一个具有10个用户(5个买方和5个卖方)的简单IEEE 13节点配电网络上的仿真结果证明了所提出的TEM平台和市场清算机制的有效性。
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