LAPSE:2023.19122
Published Article

LAPSE:2023.19122
Enhancing the Fault Ride-through Capability of a DFIG-WECS Using a High-Temperature Superconducting Coil
March 9, 2023
Abstract
With the increase in doubly fed induction generator-based wind energy conversion systems (DFIG-WECS) worldwide, improving the fault ride-through (FRT) capability of the entire system has been given much attention. Enhancement of the FRT capability of a DFIG-WECS is conventionally realized by employing a flexible AC transmission system device with a proper control system. This paper presents a non-conventional method for the improvement of the FRT of DFIG-WECS, using a high-temperature superconducting coil interfaced with the DC-link of the rotor and stator side converters through a DC-chopper. A fractional-order proportional-integral (FOPI) controller is utilized to regulate the DC-chopper duty cycle in order to properly manage the power flow between the DC-link and the coil. Two optimization techniques, Harmony Search and Grey Wolf Optimizer, are employed to determine the optimum size of the superconducting coil along with the optimum parameters of the FOPI controller. The effectiveness of the two proposed optimization techniques is highlighted through comparing their performance with the well-known particle swarm optimization technique.
With the increase in doubly fed induction generator-based wind energy conversion systems (DFIG-WECS) worldwide, improving the fault ride-through (FRT) capability of the entire system has been given much attention. Enhancement of the FRT capability of a DFIG-WECS is conventionally realized by employing a flexible AC transmission system device with a proper control system. This paper presents a non-conventional method for the improvement of the FRT of DFIG-WECS, using a high-temperature superconducting coil interfaced with the DC-link of the rotor and stator side converters through a DC-chopper. A fractional-order proportional-integral (FOPI) controller is utilized to regulate the DC-chopper duty cycle in order to properly manage the power flow between the DC-link and the coil. Two optimization techniques, Harmony Search and Grey Wolf Optimizer, are employed to determine the optimum size of the superconducting coil along with the optimum parameters of the FOPI controller. The effectiveness of the two proposed optimization techniques is highlighted through comparing their performance with the well-known particle swarm optimization technique.
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Keywords
doubly fed induction generator, fault ride-through, optimization techniques, wind energy conversion system
Subject
Suggested Citation
Mosaad MI, Abu-Siada A, Ismaiel MM, Albalawi H, Fahmy A. Enhancing the Fault Ride-through Capability of a DFIG-WECS Using a High-Temperature Superconducting Coil. (2023). LAPSE:2023.19122
Author Affiliations
Mosaad MI: Electrical and Electronic Engineering Technology Department, Yanbu Industrial College, Yanbu Al Sinaiyah, Yanbu 46452, Saudi Arabia [ORCID]
Abu-Siada A: Discipline of Electrical and Computer Engineering, Curtin University, WA 6102, Australia [ORCID]
Ismaiel MM: Department of Electrical Engineering Discipline, Faculty of Engineering, Helwan University, Helwan 11795, Egypt
Albalawi H: Department of Electrical Engineering, Faculty of Engineering, University of Tabuk, Tabuk 71491, Saudi Arabia; Renewable Energy and Energy Efficiency Center (REEEC), University of Tabuk, Tabuk 71491, Saudi Arabia
Fahmy A: Department of Electrical Engineering Discipline, Faculty of Engineering, Helwan University, Helwan 11795, Egypt
Abu-Siada A: Discipline of Electrical and Computer Engineering, Curtin University, WA 6102, Australia [ORCID]
Ismaiel MM: Department of Electrical Engineering Discipline, Faculty of Engineering, Helwan University, Helwan 11795, Egypt
Albalawi H: Department of Electrical Engineering, Faculty of Engineering, University of Tabuk, Tabuk 71491, Saudi Arabia; Renewable Energy and Energy Efficiency Center (REEEC), University of Tabuk, Tabuk 71491, Saudi Arabia
Fahmy A: Department of Electrical Engineering Discipline, Faculty of Engineering, Helwan University, Helwan 11795, Egypt
Journal Name
Energies
Volume
14
Issue
19
First Page
6319
Year
2021
Publication Date
2021-10-03
ISSN
1996-1073
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Original Submission
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PII: en14196319, Publication Type: Journal Article
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LAPSE:2023.19122
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https://doi.org/10.3390/en14196319
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Mar 9, 2023
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