杨志淳, 王晨霞, 蒋东, 韩佶, 杨帆, 闵怀东. 交直流微网群系统运行模式划分及协同互助调控策略[J]. 高电压技术, 2024, 50(3): 1111-1121. DOI: 10.13336/j.1003-6520.hve.20231485
引用本文: 杨志淳, 王晨霞, 蒋东, 韩佶, 杨帆, 闵怀东. 交直流微网群系统运行模式划分及协同互助调控策略[J]. 高电压技术, 2024, 50(3): 1111-1121. DOI: 10.13336/j.1003-6520.hve.20231485
YANG Zhichun, WANG Chenxia, JIANG Dong, HAN Ji, YANG Fan, MIN Huaidong. Operation Mode Division and Cooperative Regulation Strategy of AC/DC Microgrid Cluster System[J]. High Voltage Engineering, 2024, 50(3): 1111-1121. DOI: 10.13336/j.1003-6520.hve.20231485
Citation: YANG Zhichun, WANG Chenxia, JIANG Dong, HAN Ji, YANG Fan, MIN Huaidong. Operation Mode Division and Cooperative Regulation Strategy of AC/DC Microgrid Cluster System[J]. High Voltage Engineering, 2024, 50(3): 1111-1121. DOI: 10.13336/j.1003-6520.hve.20231485

交直流微网群系统运行模式划分及协同互助调控策略

Operation Mode Division and Cooperative Regulation Strategy of AC/DC Microgrid Cluster System

  • 摘要: 面向包含柔性多状态开关的交直流混合微网系统的多模式运行与切换场景,提出了系统运行多模式划分方法及协同互助调控策略。首先,按照通讯方式、拓扑结构、负荷状态3个模式特点将系统划分为320种运行模式;然后,针对系统的不同运行模式深入分析对应模式下的功率传输平衡关系和内在切换逻辑,应用调控策略得到多模式运行下的电压源换流器(voltage source converter,VSC)有功功率调控指令,实现了系统多模式稳定运行和自由切换、馈线负荷均衡以及主变重载自动调控。最后,通过仿真验证了所提调控策略的可靠性,并分析了通信延迟对分布式控制的影响。仿真结果表明:所提调控策略能够保障交直流微网群系统在不同运行模式下稳定运行并灵活切换。

     

    Abstract: This paper proposes a method of multi-mode operation and switching scenarios for microgrid systems with flexible multi-state switches. Firstly, the system is divided into 320 operating modes based on the characteristics of communication mode, topology structure, and load state. Then, an in-depth analysis is conducted on the power transmission balance relationship and inherent switching logic under different operating modes. By applying control strategies, the active power control instructions for voltage source converters (VSC) in multi-mode operation are obtained, which achieves stable operation and seamless switching of the system, load balancing of the feeder lines, and automatic control of the main transformer overload. Finally, the reliability of the proposed control strategy is verified through simulations, and the influence of communication delay on distributed control is analyzed. The simulation results demonstrate that the proposed control strategy can ensure stable operation and flexible switching of AC/DC hybrid microgrid systems under different operating modes.

     

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