Internal model control (IMC)-based active and reactive power control of brushless double-fed induction generator with notch filter

The increase in demand for electricity and, in particular, green energy has put renewable energy systems at the focal point of energy policy worldwide. The higher reliability of brushless doubly fed induction generators (BDFIGs) makes them suitable for offshore and remote wind energy generation (WEG...

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Main Authors: Memon, Ahsanullah, Mustafa, Mohd. Wazir, Laghari, Zohaib Hussain, Jumani, Touqeer Ahmed, Anjum, Waqas, Ullah, Shafi, Aman, Muhammad Naveed
Format: Article
Language:English
Published: Hindawi 2022
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Online Access:http://eprints.utm.my/id/eprint/102716/1/AhsanullahMemon2022_InternalModelControl%28IMC%29BasedActive.pdf
http://eprints.utm.my/id/eprint/102716/
http://dx.doi.org/10.1155/2022/4444305
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spelling my.utm.1027162023-09-18T04:16:32Z http://eprints.utm.my/id/eprint/102716/ Internal model control (IMC)-based active and reactive power control of brushless double-fed induction generator with notch filter Memon, Ahsanullah Mustafa, Mohd. Wazir Laghari, Zohaib Hussain Jumani, Touqeer Ahmed Anjum, Waqas Ullah, Shafi Aman, Muhammad Naveed TK Electrical engineering. Electronics Nuclear engineering The increase in demand for electricity and, in particular, green energy has put renewable energy systems at the focal point of energy policy worldwide. The higher reliability of brushless doubly fed induction generators (BDFIGs) makes them suitable for offshore and remote wind energy generation (WEG) applications. Besides, controlling the active and reactive powers in an electrical power system is critical for optimal voltage regulation, reduced power losses, and enhanced utilization of installed equipment. However, the existing literature on BDFIG's active and reactive power control highlights the poor dynamic response and high transients with harmonic generation during inductive load insertion. It is because the Ziegler technique was employed to select PI gains, and the instantaneous reactive power theory was used to mitigate harmonics. Considering that, this paper proposes a vector control (VC) method for BDFIGs in wind turbines, in which the proportional-integral (PI) gains for internal model control (IMC) are optimized to improve the dynamic response of the active and reactive power during inductive load insertion. The proposed method reduces the complexity, time consumption, and uncertainty in making the optimal choice. In addition, to reduce a double fundamental frequency component to the point-of-common-coupling (PCC) voltage, the excellent characteristics of the notch filter are utilized in the grid-side converter (GSC)-based vector control scheme. The simulation results in MATLAB/Simulink show that the proposed IMC-based vector control scheme with a notch filter provides satisfactory results with a minimum peak value compared to existing techniques. Hindawi 2022 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/102716/1/AhsanullahMemon2022_InternalModelControl%28IMC%29BasedActive.pdf Memon, Ahsanullah and Mustafa, Mohd. Wazir and Laghari, Zohaib Hussain and Jumani, Touqeer Ahmed and Anjum, Waqas and Ullah, Shafi and Aman, Muhammad Naveed (2022) Internal model control (IMC)-based active and reactive power control of brushless double-fed induction generator with notch filter. International Transactions on Electrical Energy Systems, 2022 . pp. 1-14. ISSN 2050-7038 http://dx.doi.org/10.1155/2022/4444305 DOI: 10.1155/2022/4444305
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Memon, Ahsanullah
Mustafa, Mohd. Wazir
Laghari, Zohaib Hussain
Jumani, Touqeer Ahmed
Anjum, Waqas
Ullah, Shafi
Aman, Muhammad Naveed
Internal model control (IMC)-based active and reactive power control of brushless double-fed induction generator with notch filter
description The increase in demand for electricity and, in particular, green energy has put renewable energy systems at the focal point of energy policy worldwide. The higher reliability of brushless doubly fed induction generators (BDFIGs) makes them suitable for offshore and remote wind energy generation (WEG) applications. Besides, controlling the active and reactive powers in an electrical power system is critical for optimal voltage regulation, reduced power losses, and enhanced utilization of installed equipment. However, the existing literature on BDFIG's active and reactive power control highlights the poor dynamic response and high transients with harmonic generation during inductive load insertion. It is because the Ziegler technique was employed to select PI gains, and the instantaneous reactive power theory was used to mitigate harmonics. Considering that, this paper proposes a vector control (VC) method for BDFIGs in wind turbines, in which the proportional-integral (PI) gains for internal model control (IMC) are optimized to improve the dynamic response of the active and reactive power during inductive load insertion. The proposed method reduces the complexity, time consumption, and uncertainty in making the optimal choice. In addition, to reduce a double fundamental frequency component to the point-of-common-coupling (PCC) voltage, the excellent characteristics of the notch filter are utilized in the grid-side converter (GSC)-based vector control scheme. The simulation results in MATLAB/Simulink show that the proposed IMC-based vector control scheme with a notch filter provides satisfactory results with a minimum peak value compared to existing techniques.
format Article
author Memon, Ahsanullah
Mustafa, Mohd. Wazir
Laghari, Zohaib Hussain
Jumani, Touqeer Ahmed
Anjum, Waqas
Ullah, Shafi
Aman, Muhammad Naveed
author_facet Memon, Ahsanullah
Mustafa, Mohd. Wazir
Laghari, Zohaib Hussain
Jumani, Touqeer Ahmed
Anjum, Waqas
Ullah, Shafi
Aman, Muhammad Naveed
author_sort Memon, Ahsanullah
title Internal model control (IMC)-based active and reactive power control of brushless double-fed induction generator with notch filter
title_short Internal model control (IMC)-based active and reactive power control of brushless double-fed induction generator with notch filter
title_full Internal model control (IMC)-based active and reactive power control of brushless double-fed induction generator with notch filter
title_fullStr Internal model control (IMC)-based active and reactive power control of brushless double-fed induction generator with notch filter
title_full_unstemmed Internal model control (IMC)-based active and reactive power control of brushless double-fed induction generator with notch filter
title_sort internal model control (imc)-based active and reactive power control of brushless double-fed induction generator with notch filter
publisher Hindawi
publishDate 2022
url http://eprints.utm.my/id/eprint/102716/1/AhsanullahMemon2022_InternalModelControl%28IMC%29BasedActive.pdf
http://eprints.utm.my/id/eprint/102716/
http://dx.doi.org/10.1155/2022/4444305
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score 13.18916