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Flocking-based decentralised double auction for P2P energy trading within neighbourhoods

机译:基于植入的P2P能源交易分散双重拍卖

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Renewable energy sources are highly unreliable and create unreliable energy surplus and energy demands. These energy surpluses and demands can be traded frequently within neighbourhoods. This paper presents a trading algorithm to trade unreliable renewable energy frequently within neighbourhoods. We considered the flocking behaviour of birds and distributed double auction, and developed a trading algorithm to perform peer-to-peer (P2P) energy trading within neighbourhoods. Peers are prosumers which can be energy co-operatives, micro grids, electric vehicles, charging stations, etc. We implemented our flocking-based decentralised double auction algorithm in Java and tested using a residential PV data set from California state in the USA. Our mathematical analysis shows that the peers are converging to average positions of neighbourhoods while performing P2P trading. Our experimental results showed that the proposed algorithm has a higher success rate and faster convergence to the success rate than the centralised double auction and distributed double auction presented in the literature. Moreover, nodes are converging to neighbourhoods. This guarantees trading within neighbourhoods. Further, we have observed that successful trading reaches around 80%.
机译:可再生能源非常不可靠,并创造不可靠的能量盈余和能源需求。这些能量盈余和需求可以经常在社区内进行交易。本文介绍了经常在社区内交易不可靠的可再生能源的交易算法。我们考虑了鸟类和分布式双拍卖的植绒行为,并开发了一个交易算法,在社区内执行对等(P2P)能量交易。同行是可以成为能源合作社,微电网,电动车辆,充电站等的制度。我们在Java中实现了基于植入的分散双重拍卖算法,并使用美国加利福尼亚州的住宅PV数据进行了测试。我们的数学分析表明,同行在执行P2P交易的同时会聚到社区的平均位置。我们的实验结果表明,该算法的成功率较高,成功率比文献中呈现的集中双拍卖和分布式双重拍卖更快。此外,节点正在融合到邻域。这保证了邻里的交易。此外,我们观察到成功的交易达到80%左右。

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