Adaptive control of DFIG-based wind turbines for fault ride-through and reactive power support based on stator current transient component

Author:

Wang Jianing,Fu Yuan,Zhang Xiangyu

Abstract

Abstract The fault ride-through performance is improved through the control of the transient components of the stator current. The reactive power provided by the DFIG within the margin of the converter can significantly enhance the grid-connected safety of the DFIG. Firstly, the reasons for the fault overcurrent of the DFIG’s rotor are analyzed. Secondly, according to the operating conditions of the wind turbine, the reactive power support limit of the DFIG-based wind turbines based on the stator current transient component control is analyzed, and an adaptive reactive power support control suitable for fault ride-through is proposed to maximize its support potential for grid-connected voltage. Finally, the DFIG can not only suppress the rotor overcurrent through the transient component of the stator current but also have a reactive power support capability that is superior to the grid-connected standard.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

Reference8 articles.

1. Low voltage ride-through enhancement in DFIG-based WECS by hybrid method [J];Angala;International Journal of Electronics,2022

2. Enhancing Doubly Fed Induction Generator Low-Voltage Ride-through Capability Using Dynamic Voltage Restorer with Adaptive Noise Cancellation Technique [J];Adel;Sustainability,2022

3. Enhancement of Dynamic Modeling for LVRT Capability in DFIG-Based Wind Turbines [J];Kenan Döşoğlu,2020

4. Augmentation of Low Voltage Ride through (LVRT) Capability using ANN-based electric spring for a Grid-tied Wind Energy Conversion System [J];Udayakumar;IOP Conference Series: Materials Science and Engineering,2021

5. Study on the electromagnetic transition of DFIG-based wind turbine under grid faults based on the analytical method [J];shuying;Proceedings of the CSEE,2013

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