多级市场下考虑用户偏好的电动汽车聚合商主从博弈定价策略

Stackelberg Game-based Pricing Strategy for Electric Vehicle Aggregators Considering User Preferences in Multi-level Markets

  • 摘要: 近年来,极端天气的频发态势以及需求侧“新电气化”的进程加速,引发电力系统短时供需失衡风险陡增与灵活性资源调节裕度不足的双重挑战。为充分挖掘需求侧规模化电动汽车(electric vehicle,EV)的市场价值与调节价值,该文提出一种面向多阶段多级市场的电动汽车聚合商(electric vehicle aggregator,EVA)主从博弈定价策略。首先,基于EV单体充电出行特征分布,量化EV集群的功率和能量可调度边界。其次,建立用户综合效用函数,来刻画不同EV用户对电价敏感度与充电舒适度消费偏好的差异化响应情况。最后,以EVA为领导者,EV为跟随者,构建参与日前能量市场、调频市场和需求响应市场多阶段交互的主从博弈定价优化模型。算例分析表明,所提方法不仅能实现EVA与EV各自利益的最大化,还能满足需求响应市场的调节需求。此外,该方法量化了需求响应市场补贴电价及用户消费偏好对EVA收益与EV用电成本的影响,为EVA与EV应对不同调节需求场景提供了参考思路。

     

    Abstract: In recent years, the increasing frequency of extreme weather events and the accelerated progress of "new electrification" on the demand side have led to dual challenges: a sharp rise in the risk of short-term supply-demand imbalances within power systems and a lack of sufficient flexibility resource regulation margins. To fully exploit the market value and regulatory potential of large-scale electric vehicles (EVs) on the demand side, we propose a multi-stage hierarchical electricity market-oriented Stackelberg game-based pricing strategy for electric vehicle aggregators (EVAs). First, the power and energy schedulable boundaries of EV clusters are quantified based on the charging-travel characteristic distributions of individual EV. Second, a comprehensive user utility function is constructed to characterize the differentiated responses of EV users to electricity price sensitivity and charging comfort preferences. Finally, a leader-follower Stackelberg game optimization model is developed, where the EVA acts as the leader and EVs as followers. This model enables their participation in multi-stage interactions across day-ahead energy markets, frequency regulation markets, and demand response markets. Case studies demonstrate that the proposed method effectively maximizes the benefits of both EVA and EV, while meeting the regulation requirements of demand response markets. Furthermore, the impacts of demand response market subsidy pricing and user consumption preferences on EVA revenue and EV charging costs are quantified, providing insights for EVAs and EVs to address different regulatory demand scenarios.

     

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