Fault Ride-through Strategy of Voltage-controlled Doubly-fed Wind Turbine Based on Improved Active Disturbance Rejection

被引:0
|
作者
Xie Z. [1 ]
Cui J. [1 ]
Li Z. [1 ]
Zhang X. [1 ]
机构
[1] School of Electrical Engineering and Automation, Hefei University of Technology, Hefei
基金
中国国家自然科学基金;
关键词
active disturbance rejection; doubly-fed induction generator; extended state observer; fault ride-through;
D O I
10.7500/AEPS20210828002
中图分类号
学科分类号
摘要
The voltage-controlled doubly-fed induction generator (VC-DFIG) has good voltage/frequency supporting capacity and its double closed-loop structure of stator voltage and rotor current helps maintain the voltage stability, which makes it more suitable for operation in weak grids. A rotor overcurrent suppression strategy based on the improved active disturbance rejection is proposed for the electromagnetic transient problem under symmetric faults of the power grid with VC-DFIG. Firstly, an active disturbance rejection control scheme of rotor current is constructed based on the VC-DFIG rotor current mathematical model. Then, for the problem of insufficient disturbance estimation by the extended state observer (ESO) at the moment of the voltage drop in the power grid, a certain transient component is introduced into the disturbance estimation. On one hand, the speed and accuracy of the disturbance estimation are further improved, and the rotor overcurrent suppression capability of the VC-DFIG under the fault is enhanced. On the other hand, ESO can suppress the disturbance caused by the change of transient components and reduce the dependence on the accuracy of transient magnetic chain observation, which has better robustness. Finally, the superiority of the proposed scheme is verified by experimental results. © 2022 Automation of Electric Power Systems Press. All rights reserved.
引用
收藏
页码:160 / 169
页数:9
相关论文
共 28 条
  • [1] KONG Minyue, SUN Dan, NIAN Heng, Modeling method for power response characteristics of DFIG-based wind turbine system, Automation of Electric Power Systems, 46, 2, pp. 118-125, (2022)
  • [2] ZHU D, ZHOU S, ZOU X, Et al., Improved design of PLL controller for LCL-type grid-connected converter in weak grid, IEEE Transactions on Power Electronics, 3, 5, pp. 4715-4727, (2020)
  • [3] ZHANG Xueguang, MA Yan, WANG Tianyi, Et al., Input admittance modeling and stability analysis of DFIG under weak grid condition, Proceedings of the CSEE, 37, 5, pp. 1507-1516, (2017)
  • [4] XU Hailiang, WU Han, LI Zhi, Et al., Several key issues on stability study of DFIG-based wind turbines with negative sequence control during low short-circuit ratio power grids, Transactions of China Electrotechnical Society, 36, 22, pp. 4688-4702, (2021)
  • [5] WU C, XIONG X L, TAUL M G, Et al., Enhancing transient stability of PLL-synchronized converters by introducing voltage normalization control, IEEE Journal on Emerging and Selected Topics in Circuits and Systems, 11, 1, pp. 69-78, (2021)
  • [6] SUN Jun, JIANG Tianlong, WANG Yangming, Et al., Optimization strategy of virtual synchronous generator control for doubly-fed induction generator in unbalanced power grid, Automation of Electric Power Systems, 44, 10, pp. 135-144, (2020)
  • [7] XIE Zhen, MENG Hao, ZHANG Xing, Et al., Virtual synchronous control strategy of DFIG-based wind turbines based on stator virtual impedance, Automation of Electric Power Systems, 42, 9, pp. 157-163, (2018)
  • [8] LI Hui, WANG Kun, HU Yu, Et al., Impedance modeling and stability analysis of virtual synchronous control based on doubly-fed wind generation systems, Proceedings of the CSEE, 39, 12, pp. 3434-3443, (2019)
  • [9] WANG S, HU J B, YUAN X M., Virtual synchronous control for grid-connected DFIG-based wind turbines, IEEE Journal of Emerging and Selected Topics in Power Electronics, 3, 4, pp. 932-944, (2015)
  • [10] ZHOU Peng, ZHANG Xinyan, DI Qiang, Et al., Presynchronous grid-connection strategy of DFIG-based wind turbine with virtual synchronous generator control, Automation of Electric Power Systems, 44, 14, pp. 71-78, (2020)