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作 者:赵强松[1] 陈昊 王启帆 王燕[1] 谢文文 Zhao Qiangsong;Chen Hao;Wang Qifan;Wang Yan;Xie Wenwen(School of Electronic and Information Zhongyuan University of Technology,Zhengzhou 451191 China;Zhenzhou Power Supply Company State Grid Electric Power Company,Zhengzhou 450001 China)
机构地区:[1]中原工学院电子信息学院,郑州451191 [2]国家电网郑州供电公司,郑州450001
出 处:《电工技术学报》2024年第15期4843-4855,共13页Transactions of China Electrotechnical Society
基 金:国家自然科学基金(61973157,62073297);河南省自然科学基金(232300421239);河南省重点研发计划专项(231111221600)资助项目。
摘 要:重复控制因其能有效抑制谐波信号而被广泛应用于逆变器控制中,但其动态性能较差,且在电网频率波动时谐波抑制性能下降严重。为此,该文提出一种频率自适应前馈双模重复-比例控制。在双模重复控制的内模中加入前馈环节改善系统的动态性能,并使用无限脉冲响应滤波器实现对电网频率波动导致的分数延迟精确近似。该文给出频率自适应前馈双模重复-比例控制的原理、稳定性分析和参数优化设计过程。实验结果证明了所提出的控制方法在电网频率波动时能抑制并网电流谐波,且具有较好的动态性能。Repetitive control(RC)based on the internal model principle can achieve zero tracking error for periodic reference and disturbance in a steady state.It has been widely used in grid-connected inverters to improve the current control performance.Owing to a recursive form and an inherent delay of one fundamental period in the internal model,the RC has a relatively slow transient response.At the same time,grid frequency fluctuations in the microgrid lead to the higher harmonic content of the inverter grid current.Therefore,this paper proposes the frequency adaptive feedforward dual-mode repetitive control and proportional control(FA-FDMRC-PC)scheme for grid-connected inverters in the microgrid to track the fundamental reference signal and suppress the harmonic signals simultaneously.First,the principle of feedforward dual-mode repetitive control(FDMRC)is analyzed.The feedforward links are added to the internal models of the dual-mode repetitive control(DMRC)to improve the dynamic performance of the system.From the open-loop bode plots of FDMRC,DMRC,and RC,it can be seen that the FDMRC has much larger open-loop gains at the frequencies of interest with better harmonic suppression capability.Then,the FA-FDMRC-PC scheme is proposed,which connects the FDMRC and the proportional control in parallel to form the feedforward dual-mode repetitive control and proportional control(FDMRC-PC),further improving the dynamic performance of the system and realizing the fractional delay through the infinite impulse response(IIR)filter.The stability analysis provides the relevant stability conditions,which are then utilized in designing the proportional gain,internal mode filter,compensator,phase lead compensator,and repetitive control gain.Subsequently,a single-phase LCL-type grid-connected inverter experimental platform is set up.The controller based on repetitive control and proportional control(RC-PC)and FA-FDMRC-PC are compared at the grid frequency of 50 Hz to verify the harmonics suppression capability and dynamic performance of
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