Deadbeat Decoupling Control of VSC-HVDC Systems for Grid Connection of Wind Farms
Fu Xiaofan1, Zhou Keliang1, Cheng Ming1, Zhu Xiaodong2, Wang Wei2, Wang Tong2
1.Enginecring Research Center for Motion Control of MOE Southeast University Nanjing 210096 China 2. Nanjing Automation Research Institute/NARI Group Corp. Nanjing 210003 China
Abstract:With the trend to grid-connection of wind farms via VSC-HVDC, this paper develops a universal dynamic model of VSC-HVDC, and proposes a novel deadbeat decoupling control scheme for VSC-HVDC systems to independently regulate the active power, reactive power and dc voltage. The proposed control scheme, is easy for design, consumes less computation time, and yields high tracking accuracy and fast dynamic response. To testify the validity of the proposed control scheme, a case of two-terminal three-level VSC-HVDC system for grid connection of wind farms is developed in Matlab/Simulink. Simulation results show that the proposed control scheme provides a novel high performance control solution to VSC-HVDC systems for grid connection of wind farms.
傅晓帆, 周克亮, 程明, 朱晓东, 王伟, 王彤. 风电场并网用VSC-HVDC的无差拍解耦控制策略[J]. 电工技术学报, 2009, 24(11): 157-154.
Fu Xiaofan, Zhou Keliang, Cheng Ming, Zhu Xiaodong, Wang Wei, Wang Tong. Deadbeat Decoupling Control of VSC-HVDC Systems for Grid Connection of Wind Farms. Transactions of China Electrotechnical Society, 2009, 24(11): 157-154.