Frequency Adaptive Feedforward Dual-Mode Repetitive Control and Proportional Control for Grid-Connected Inverters in Microgrid

被引:0
|
作者
Zhao, Qiangsong [1 ]
Chen, Hao [1 ]
Wang, Qifan [1 ]
Wang, Yan [1 ]
Xie, Wenwen [2 ]
机构
[1] School of Electronic and Information, Zhongyuan University of Technology, Zhengzhou,451191, China
[2] Zhenzhou Power Supply Company, State Grid Electric Power Company, Zhengzhou,450001, China
关键词
Adaptive feedforward - Dual modes - Frequency adaptive - Grid-connected - Grid-connected inverter - Impulse response filters - Infinite impulse response - Microgrid - Proportional control - Repetitive control;
D O I
10.19595/j.cnki.1000-6753.tces.231947
中图分类号
学科分类号
摘要
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 the proposed control scheme under the ideal grid. The total harmonic distortion (THD) of the grid current of the proposed FA-FDMRC-PC is 1.0%. However, for the RC-PC, the THD value is 1.5%, higher than the THD of the FA-FDMRC-PC. To verify the dynamic performance of the FA-FDMRC-PC, output current waveforms are recorded and analyzed when the peak value of the reference current is changed from 5 A to 10 A. The waveform of the grid current tends to be stable after about two cycles for the FA-FDMRC-PC when the reference current changes abruptly, which shows that the proposed FA-FDMRC-PC has a faster transient response than the RC-PC. When the grid frequency is 49.6 Hz, the THD of the FA-FDMRC-PC is only 0.8%, but the THD of the FDMRC-PC rises to 1.6%. When the grid frequency is 50.4 Hz, the THD of the FA-FDMRC-PC is only 0.8%, but the THD of the FDMRC-PC rises to 1.9%. When the grid frequencies are 49.6 Hz and 50.4 Hz, the waveforms of the grid current tend to be stable after about two cycles for the FA-FDMRC-PC when the peak value of the reference current is changed from 5 A to 10 A. Experimental results verify that the proposed FA-FDMRC-PC scheme has a better immunity to grid frequency fluctuation and a faster dynamic response when the grid frequency fluctuates. © 2024 China Machine Press. All rights reserved.
引用
收藏
页码:4843 / 4855
相关论文
共 50 条
  • [1] Frequency Adaptive Proportional-Repetitive Control for Grid-Connected Inverters
    Ye, Jie
    Liu, Linguo
    Xu, Jinbang
    Shen, Anwen
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2021, 68 (09) : 7965 - 7974
  • [2] Adaptive repetitive control with feedforward scheme for grid-connected inverters
    Abusara, Mohammad
    Sharkh, Suleiman
    Zanchetta, Pericle
    IET POWER ELECTRONICS, 2015, 8 (08) : 1403 - 1410
  • [3] Frequency Adaptive Repetitive Control of Grid-connected Inverters
    Nazir, Rabia
    Zhou, Keliang
    Watson, Neville R.
    Wood, Alan
    2014 INTERNATIONAL CONFERENCE ON CONTROL, DECISION AND INFORMATION TECHNOLOGIES (CODIT), 2014, : 584 - 588
  • [4] Control of Grid-Connected Inverters Using Adaptive Repetitive and Proportional Resonant Schemes
    Abusara, Mohammad A.
    Sharkh, Suleiman M.
    Zanchetta, Pericle
    JOURNAL OF POWER ELECTRONICS, 2015, 15 (02) : 518 - 529
  • [5] H∞ repetitive voltage control of grid-connected inverters with a frequency adaptive mechanism
    Hornik, T.
    Zhong, Q. -C.
    IET POWER ELECTRONICS, 2010, 3 (06) : 925 - 935
  • [6] Frequency Adaptive Selective Harmonic Control for Grid-Connected Inverters
    Yang, Yongheng
    Zhou, Keliang
    Wang, Huai
    Blaabjerg, Frede
    Wang, Danwei
    Zhang, Bin
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2015, 30 (07) : 3912 - 3924
  • [7] Dual-mode flyback inverters in grid-connected photovoltaic systems
    Kim, Sooa
    Lee, Sung-Ho
    Lee, Jin S.
    Kim, Minsung
    IET RENEWABLE POWER GENERATION, 2016, 10 (09) : 1402 - 1412
  • [8] Voltage Control of Grid-Connected Inverters Based on H∞ and Repetitive Control
    Hornik, Tomas
    Zhong, Qing-Chang
    2010 8TH WORLD CONGRESS ON INTELLIGENT CONTROL AND AUTOMATION (WCICA), 2010, : 270 - 275
  • [9] Dual-Mode Soft-Transition Control for Single-Phase Grid-Connected Photovoltaic Inverters
    Elizondo, David
    Urtasun, Andoni
    2018 IEEE 19TH WORKSHOP ON CONTROL AND MODELING FOR POWER ELECTRONICS (COMPEL), 2018,
  • [10] Proportional Resonance Control Application for Photovoltaic Grid-connected Inverters
    Zheng, Jinfeng
    Wang, Qiao
    Li, Yafei
    Wang, Jun
    Zhang, Xiaohui
    Wang, Xianbo
    2023 5TH ASIA ENERGY AND ELECTRICAL ENGINEERING SYMPOSIUM, AEEES, 2023, : 935 - 940