Cargando…

Dynamic response and low voltage ride-through enhancement of brushless double-fed induction generator using Salp swarm optimization algorithm

A brushless double-fed induction generator (BDFIG) has shown tremendous success in wind turbines due to its robust brushless design, smooth operation, and variable speed characteristics. However, the research regarding controlling of machine during low voltage ride through (LVRT) need greater attent...

Descripción completa

Detalles Bibliográficos
Autores principales: Memon, Ahsanullah, Wazir Bin Mustafa, Mohd, Anjum, Waqas, Ahmed, Ahsan, Ullah, Shafi, Altbawi, Saleh Masoud Abdallah, Jumani, Touqeer Ahmed, Khan, Ilyas, Hamadneh, Nawaf N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9098059/
https://www.ncbi.nlm.nih.gov/pubmed/35551274
http://dx.doi.org/10.1371/journal.pone.0265611
_version_ 1784706298293518336
author Memon, Ahsanullah
Wazir Bin Mustafa, Mohd
Anjum, Waqas
Ahmed, Ahsan
Ullah, Shafi
Altbawi, Saleh Masoud Abdallah
Jumani, Touqeer Ahmed
Khan, Ilyas
Hamadneh, Nawaf N.
author_facet Memon, Ahsanullah
Wazir Bin Mustafa, Mohd
Anjum, Waqas
Ahmed, Ahsan
Ullah, Shafi
Altbawi, Saleh Masoud Abdallah
Jumani, Touqeer Ahmed
Khan, Ilyas
Hamadneh, Nawaf N.
author_sort Memon, Ahsanullah
collection PubMed
description A brushless double-fed induction generator (BDFIG) has shown tremendous success in wind turbines due to its robust brushless design, smooth operation, and variable speed characteristics. However, the research regarding controlling of machine during low voltage ride through (LVRT) need greater attention as it may cause total disconnection of machine. In addition, the BDFIG based wind turbines must be capable of providing controlled amount of reactive power to the grid as per modern grid code requirements. Also, a suitable dynamic response of machine during both normal and fault conditions needs to be ensured. This paper, as such, attempts to provide reactive power to the grid by analytically calculating the decaying flux and developing a rotor side converter control scheme accordingly. Furthermore, the dynamic response and LVRT capability of the BDFIG is enhanced by using one of the very intelligent optimization algorithms called the Salp Swarm Algorithm (SSA). To prove the efficacy of the proposed control scheme, its performance is compared with that of the particle swan optimization (PSO) based controller in terms of limiting the fault current, regulating active and reactive power, and maintaining the stable operation of the power system under identical operating conditions. The simulation results show that the proposed control scheme significantly improves the dynamic response and LVRT capability of the developed BDFIG based wind energy conversion system; thus proves its essence and efficacy.
format Online
Article
Text
id pubmed-9098059
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-90980592022-05-13 Dynamic response and low voltage ride-through enhancement of brushless double-fed induction generator using Salp swarm optimization algorithm Memon, Ahsanullah Wazir Bin Mustafa, Mohd Anjum, Waqas Ahmed, Ahsan Ullah, Shafi Altbawi, Saleh Masoud Abdallah Jumani, Touqeer Ahmed Khan, Ilyas Hamadneh, Nawaf N. PLoS One Research Article A brushless double-fed induction generator (BDFIG) has shown tremendous success in wind turbines due to its robust brushless design, smooth operation, and variable speed characteristics. However, the research regarding controlling of machine during low voltage ride through (LVRT) need greater attention as it may cause total disconnection of machine. In addition, the BDFIG based wind turbines must be capable of providing controlled amount of reactive power to the grid as per modern grid code requirements. Also, a suitable dynamic response of machine during both normal and fault conditions needs to be ensured. This paper, as such, attempts to provide reactive power to the grid by analytically calculating the decaying flux and developing a rotor side converter control scheme accordingly. Furthermore, the dynamic response and LVRT capability of the BDFIG is enhanced by using one of the very intelligent optimization algorithms called the Salp Swarm Algorithm (SSA). To prove the efficacy of the proposed control scheme, its performance is compared with that of the particle swan optimization (PSO) based controller in terms of limiting the fault current, regulating active and reactive power, and maintaining the stable operation of the power system under identical operating conditions. The simulation results show that the proposed control scheme significantly improves the dynamic response and LVRT capability of the developed BDFIG based wind energy conversion system; thus proves its essence and efficacy. Public Library of Science 2022-05-12 /pmc/articles/PMC9098059/ /pubmed/35551274 http://dx.doi.org/10.1371/journal.pone.0265611 Text en © 2022 Memon et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Memon, Ahsanullah
Wazir Bin Mustafa, Mohd
Anjum, Waqas
Ahmed, Ahsan
Ullah, Shafi
Altbawi, Saleh Masoud Abdallah
Jumani, Touqeer Ahmed
Khan, Ilyas
Hamadneh, Nawaf N.
Dynamic response and low voltage ride-through enhancement of brushless double-fed induction generator using Salp swarm optimization algorithm
title Dynamic response and low voltage ride-through enhancement of brushless double-fed induction generator using Salp swarm optimization algorithm
title_full Dynamic response and low voltage ride-through enhancement of brushless double-fed induction generator using Salp swarm optimization algorithm
title_fullStr Dynamic response and low voltage ride-through enhancement of brushless double-fed induction generator using Salp swarm optimization algorithm
title_full_unstemmed Dynamic response and low voltage ride-through enhancement of brushless double-fed induction generator using Salp swarm optimization algorithm
title_short Dynamic response and low voltage ride-through enhancement of brushless double-fed induction generator using Salp swarm optimization algorithm
title_sort dynamic response and low voltage ride-through enhancement of brushless double-fed induction generator using salp swarm optimization algorithm
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9098059/
https://www.ncbi.nlm.nih.gov/pubmed/35551274
http://dx.doi.org/10.1371/journal.pone.0265611
work_keys_str_mv AT memonahsanullah dynamicresponseandlowvoltageridethroughenhancementofbrushlessdoublefedinductiongeneratorusingsalpswarmoptimizationalgorithm
AT wazirbinmustafamohd dynamicresponseandlowvoltageridethroughenhancementofbrushlessdoublefedinductiongeneratorusingsalpswarmoptimizationalgorithm
AT anjumwaqas dynamicresponseandlowvoltageridethroughenhancementofbrushlessdoublefedinductiongeneratorusingsalpswarmoptimizationalgorithm
AT ahmedahsan dynamicresponseandlowvoltageridethroughenhancementofbrushlessdoublefedinductiongeneratorusingsalpswarmoptimizationalgorithm
AT ullahshafi dynamicresponseandlowvoltageridethroughenhancementofbrushlessdoublefedinductiongeneratorusingsalpswarmoptimizationalgorithm
AT altbawisalehmasoudabdallah dynamicresponseandlowvoltageridethroughenhancementofbrushlessdoublefedinductiongeneratorusingsalpswarmoptimizationalgorithm
AT jumanitouqeerahmed dynamicresponseandlowvoltageridethroughenhancementofbrushlessdoublefedinductiongeneratorusingsalpswarmoptimizationalgorithm
AT khanilyas dynamicresponseandlowvoltageridethroughenhancementofbrushlessdoublefedinductiongeneratorusingsalpswarmoptimizationalgorithm
AT hamadnehnawafn dynamicresponseandlowvoltageridethroughenhancementofbrushlessdoublefedinductiongeneratorusingsalpswarmoptimizationalgorithm