具有分布式生产消费者的配电网交易耦合顺序运行仿真

Jianping Yang, Yue Xiang
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引用次数: 0

摘要

考虑到P2P交易对配电网运行的影响越来越大,本文提出了一种交易耦合的多智能体运行仿真方法。首先,采用基于失望回避理论的竞价策略来模拟产消费者的自利市场行为。然后,构建了基于深度神经网络的灵敏度分析模型,嵌入网络约束,辅助各种能源交易的网络收费动态定价。最后,设计了一种基于两阶段连续双拍卖的P2P交易机制,实现了多轮匹配清算。数值算例表明,该方法在满足线路拥塞和电压约束的前提下,可使购电成本降低5.12%,有助于实现配电网的经济高效运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trading-coupled Sequential Operation Simulation of Distribution Network with Distributed Prosumers
Considering the increasingly influence of peer-to-peer(P2P) trading on distribution network operation, a trading coupled multi-agent operation simulation method is proposed in this paper. Firstly, a bidding strategy based on disappointment avoidance theory is adopted to simulate the self-interested market behavior of prosumers. And then, a sensitivity analysis model based on deep neural network is constructed to embed network constraints which assists the dynamic pricing of network charges for various energy trading. Finally, a P2P transaction mechanism based on two-stage continuous double auction is designed to realize multi-round matching clearing. Numerical cases show that the proposed method reduces the power purchase cost by 5.12% on the premise of meeting the line congestion and voltage constraints, which is helpful to realize the economical and efficient operation of distribution network.
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