郑伟,张乐,张建军,等. 基于虚拟同步的V2G调度控制策略[J]. 南方能源建设,2025,12(2):116-127.. DOI: 10.16516/j.ceec.2024-271
引用本文: 郑伟,张乐,张建军,等. 基于虚拟同步的V2G调度控制策略[J]. 南方能源建设,2025,12(2):116-127.. DOI: 10.16516/j.ceec.2024-271
ZHENG Wei, ZHANG Le, ZHANG Jianjun, et al. V2G scheduling control strategy based on virtual synchronization [J]. Southern energy construction, 2025, 12(2): 116-127. DOI: 10.16516/j.ceec.2024-271
Citation: ZHENG Wei, ZHANG Le, ZHANG Jianjun, et al. V2G scheduling control strategy based on virtual synchronization [J]. Southern energy construction, 2025, 12(2): 116-127. DOI: 10.16516/j.ceec.2024-271

基于虚拟同步的V2G调度控制策略

V2G Scheduling Control Strategy Based on Virtual Synchronization

  • 摘要:
    目的 随着电动汽车数量的快速增加,电动汽车储能对电网的影响日益显著。为了实现电动汽车充电站与电网的动态交互,利用电动汽车储能调节负荷,以减小峰谷差和对电网的冲击,文章提出了一种基于虚拟同步技术的控制调度策略,考虑将无功响应纳入新型电力系统。
    方法 首先,文章采用日前申请机制,建立了双层滚动优化调度模型,用于制定各充电站的充电计划。随后,针对V2G(Vehicle to Grid)系统的工作模式和特点,提出了一种改进型虚拟同步控制方式。该控制方式下,功率能够双向流动,并通过V2G调度控制策略进行最优分配,从而实现有功和无功的调度响应。
    结果 实验结果表明:所提出的策略能够有效减小电动汽车充放电对电力系统的冲击,增强系统的稳定性。此外,通过将上层调度指令下发到下层V2G变换器控制上,可以很好地实现充电站与电网的双向互动。
    结论 上层调度策略与下层变换器控制策略的结合,不仅满足了V2G系统的基本需求,还展现出良好的输出特性。这一控制调度策略为未来电力系统的稳定运行提供了有力保障。

     

    Abstract:
    Objective With the rapid increase in the number of electric vehicles (EVs), the impact of EV energy storage on the power grid has become increasingly significant. To enable dynamic interaction between EV charging stations and the grid, and to use EV energy storage to regulate load in order to reduce peak-valley differences and mitigate grid impacts, this paper proposes a control and scheduling strategy based on virtual synchronous technology, considering the integration of reactive power response into the new power system.
    Method Firstly, a day-ahead application mechanism was adopted, and a two-layer rolling optimization scheduling model was established to formulate charging plans for each charging station. Then, considering the working mode and characteristics of the V2G (Vehicle to Grid) system, an improved virtual synchronous control method was proposed. Under this control method, power can flow bidirectionally, and optimal power distribution was achieved through the V2G scheduling control strategy, thereby realizing both active and reactive power dispatch responses.
    Result Experimental results show that the proposed strategy effectively reduces the impact of EV charging and discharging on the power system, enhancing system stability. Additionally, by issuing upper-level scheduling instructions to the lower-level V2G converter controls, bidirectional interaction between charging stations and the grid can be well realized.
    Conclusion The combination of the upper-level scheduling strategy and lower-level converter control strategy not only meets the basic needs of the V2G system but also demonstrates excellent output characteristics. This control and scheduling strategy provides strong support for the stable operation of future power systems.

     

/

返回文章
返回