arXiv:2506.06325cs.NEcs.AI2025-06

用鹰鸽策略模拟微电网间能源交易,实现社区级能量自洽。

Evolutionary model for energy trading in community microgrids using Hawk-Dove strategies

  • 每个微电网按储能状态选鹰或鸽策略,通过演化算法优化交易矩阵。
  • 100个微电网中95个达成稳定能量状态,有效平衡个体与社区需求。
  • 适合关注分布式能源协同调度的科研与工程人员参考。

本文提出一种去中心化的微电网间能源协作模型,各微电网作为自主代理,根据电池储能水平和交易角色采用鹰或鸽策略。买卖微电网间的互动通过演化算法建模,个体以能量交易矩阵表示,通过专用矩阵重组与高斯分布突变进行进化。适应度函数综合考虑卖方收益、社区层面能量稳定性、社区能量失衡惩罚及微电网电池退化成本。在含100个微电网的仿真场景中,各具独立买卖阈值,反映真实储能差异,结果显示95个微电网达到稳定能量状态,验证了该模型在个体与社区双层面实现能量均衡的有效性。

原文摘要 · Abstract (English)

This paper proposes a decentralized model of energy cooperation between microgrids, in which decisions are made locally, at the level of the microgrid community. Each microgrid is modeled as an autonomous agent that adopts a Hawk or Dove strategy, depending on the level of energy stored in the battery and its role in the energy trading process. The interactions between selling and buying microgrids are modeled through an evolutionary algorithm. An individual in the algorithm population is represented as an energy trading matrix that encodes the amounts of energy traded between the selling and buying microgrids. The population evolution is achieved by recombination and mutation operators. Recombination uses a specialized operator for matrix structures, and mutation is applied to the matrix elements according to a Gaussian distribution. The evaluation of an individual is made with a multi-criteria fitness function that considers the seller profit, the degree of energy stability at the community level, penalties for energy imbalance at the community level and for the degradation of microgrids batteries. The method was tested on a simulated scenario with 100 microgrids, each with its own selling and buying thresholds, to reflect a realistic environment with variable storage characteristics of microgrids batteries. By applying the algorithm on this scenario, 95 out of the 100 microgrids reached a stable energy state. This result confirms the effectiveness of the proposed model in achieving energy balance both at the individual level, for each microgrid, and at the level of the entire community.

能源交易演化算法微电网协同调度

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