Improving the transition capability of the low-voltage wind turbine in the sub-synchronous state using a fuzzy controller

Author:

Dwijendra Ngakan Ketut Acwin1ORCID,Jalil Abduladheem Turki23ORCID,Abed Azher M4,Bashar Bashar S5,Al-Nussairi Ahmed Kateb Jumaah6,Hammid Ali Thaeer7,Shamel Ali8ORCID,Uktamov Khusniddin Fakhriddinovich9

Affiliation:

1. Faculty of Engineering, Udayana University , Bali , Indonesia , 80361

2. Faculty of Biology and Ecology, Yanka Kupala State University of Grodno , 230023 Grodno , Belarus

3. College of Technical Engineering, The Islamic University , Najaf , Iraq

4. Department of Air Conditioning and Refrigeration, Al-Mustaqbal University College , Babylon , Iraq

5. Al-Nisour University College , Baghdad , Iraq

6. Al-Manara College for Medical Sciences , Maysan , Iraq

7. Computer Engineering Techniques, Faculty of Information Technology, Imam Ja’afar Al-Sadiq University , Baghdad , Iraq

8. Department of Chemistry, Ardebil Branch, Islamic Azad University , Ardebil , Iran

9. ‘Economic Security’ Department, Tashkent State University of Economics, Tashkent City , Uzbekistan

Abstract

Abstract The main problem of wind turbines is associated with induction generators in their power supply during short circuits in the grid. In this research, a new method is presented for the uninterrupted operation of a wind turbine equipped with an induction generator fed on both sides of feeding during network errors. Wind farms equipped with a doubly-fed induction generator (DFIG) require two abilities to allow system operators to increase proficiency. These capabilities include fault ride-through and synchronization of output force fluctuations, especially when these generators generate significant electrical power. A MATLAB® software environment has been used to evaluate and improve the performance of these turbines. A fuzzy complement (FC) controller is used to improve the performance of the DFIG. The results demonstrate that this controller limits the operation of the turbine current and voltage in the short-circuit mode well. Regarding results obtained from comparing two different modes, it can be said that ripple is 4% in the FC mode, while this parameter is equal to 10% for the proportional-integral controller.

Publisher

Oxford University Press (OUP)

Subject

Management, Monitoring, Policy and Law,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Environmental Engineering

Reference22 articles.

1. Low voltage rides through enhancement for wind turbines equipped with DFIG under symmetrical grid faults;Justo;Tanzania Journal of Engineering and Technology,2019

2. Optimal load frequency control of island microgrids via a PID controller in the presence of wind turbine and PV;Alayi;Sustainability,2021

3. Inter-turn short circuit fault and high resistance connection in stator of doubly-fed induction generators;Afshari;Renewable Energy Research and Applications,2021

4. Low-voltage ride-through (LVRT) capability enhancement of DFIG-based wind farm by using bridge-type superconducting fault current limiter (BTSFCL);Firouzi;Journal of Power Technologies,2020

5. Analytical methods of voltage stability in renewable dominated power systems: a review;Liang;Electricity,2022

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