基于多智能体一致性算法的多变换器协同控制OA
Multi-converter collaborative control based on multi-agent consensus algorithm
针对多变换器并联系统因线路阻抗不匹配引发的功率分配失衡与电压/频率偏移问题,提出了一种基于多智能体一致性算法的协同控制方法.通过分布式一致性协议动态生成自适应虚拟阻抗,有效补偿线路阻抗差异,实现有功功率和无功功率均分;同时,利用多智能体一致性算法实现多变换器之间的协同控制,在此基础上对有功-频率和无功-电压下垂特性曲线进行自适应调节,减小系统频率和电压偏差.最后,使用MATLAB/Simulink仿真软件对微电网孤岛模式下不同运行工况进行仿真与对比分析,验证了所提控制方法的有效性.
To address the issues of power distribution imbalance and voltage/frequency deviation caused by line impedance mismatch in multi-converter parallel systems,a collaborative control method based on a multi-agent consensus algorithm was proposed.Adaptive virtual impedance was dynamically generated by a distributed consensus protocol to effectively compensate for line impedance differences,thereby achieving equal distribution of both active and reactive power.Meanwhile,a multi-agent consensus algorithm was employed to achieve collaborative control among multiple converters.On this basis,the active-power-frequency and reactive-power-voltage droop characteristics curves were adaptively adjusted,thereby reducing the frequency and voltage deviations of the system.Finally,simulations and comparative analysis under various operating conditions in an islanded microgrid were conducted using MATLAB/Simulink and the effectiveness of the proposed control method is validated.
陈雅芳;李建国
北京信息科技大学自动化学院,北京 100192北京信息科技大学自动化学院,北京 100192
信息技术与安全科学
多变换器协同控制一致性算法动态虚拟阻抗
multi-converter collaborative controlconsensus algorithmdynamic virtual impedance
《北京信息科技大学学报(自然科学版)》 2026 (1)
101-108,8
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