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Stabilizing peer-to-peer energy trading in prosumer coalition through computational efficient pricing

机译:通过计算有效定价稳定Prosumer联盟的同行能源交易

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摘要

Load balancing issues in distribution networks have emerged alongside the large-scale deployment of distributed renewable generation sources. In light of this challenge, peer-to-peer (P2P) energy trading constitutes a promising approach for delivering secure and economic supply-demand balance when faced with variable load and intermittent renewable generation through matching energy demand and supply locally. However, state-of-the-art mechanisms for governing P2P energy trading either fail to suitably incentivize prosumers to participate in P2P trading or suffer severely from the curse of dimensionality with their computational complexity increase exponentially with the number of prosumers. In this paper, a P2P energy trading mechanism based on cooperative game theory is proposed to establish a grand energy coalition of prosumers and a computationally efficient pricing algorithm is developed to suitably incentivize prosumers for their sustainable participation in the grand coalition. The performance of the proposed algorithm is demonstrated by comparing it to state-of-the-art mechanisms through numerous case studies in a real-world scenario. The superior computational performance of the proposed algorithm is also validated.
机译:配送网络中的负载平衡问题仍然存在于分布式可再生生成源的大规模部署。鉴于这一挑战,对等(P2P)能源交易构成了通过匹配能源需求和当地供应的可变负荷和间歇性再生能源,提供安全和经济供需平衡的有希望的方法。然而,用于治理P2P能源交易的最先进机制要么无法适当地激励制度,以参与P2P交易或严重遭受维度的诅咒,其计算复杂性随着制度的数量而导数。本文提出了一种基于合作博弈论的P2P能源交易机制,建立了制度的大能联盟,制定了计算高效定价算法,以适当地激励其可持续参与大联盟的制度。通过将其与现实世界情景中的许多案例研究比较来证明所提出的算法的性能。还验证了所提出的算法的卓越的计算性能。

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