Simultaneous analysis of frequency and voltage control of the interconnected hybrid power system in presence of FACTS devices and demand response scheme

This work confers the simultaneous analysis of voltage and frequency control of the 3-area interconnected hybrid power system (IHPS) consisting of parabolic-trough solar power system (PSP), wind power system (WPS) and dish-stirling solar power system (DSP) under the paradigm of microgrid. The specul...

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Autores principales: Sudhanshu Ranjan, Abdul Latif, Dulal Chandra Das, Nidul Sinha, S.M. Suhail Hussain, Taha Selim Ustun, Atif Iqbal
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Lenguaje:EN
Publicado: Elsevier 2021
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spelling oai:doaj.org-article:bd105c166d15461fac405e0eafc076b22021-11-16T04:10:47ZSimultaneous analysis of frequency and voltage control of the interconnected hybrid power system in presence of FACTS devices and demand response scheme2352-484710.1016/j.egyr.2021.10.100https://doaj.org/article/bd105c166d15461fac405e0eafc076b22021-11-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2352484721011197https://doaj.org/toc/2352-4847This work confers the simultaneous analysis of voltage and frequency control of the 3-area interconnected hybrid power system (IHPS) consisting of parabolic-trough solar power system (PSP), wind power system (WPS) and dish-stirling solar power system (DSP) under the paradigm of microgrid. The speculated result of the IHPS is presented and analyzed considering real and reactive power as the function of both voltage and frequency. 9The proposed IHPS under investigation has been mathematically modeled for direct coupling like active power–frequency and reactive power–voltage relationships and cross coupling like active power–voltage and reactive power–frequency​ relationships. The system responses under different operating conditions have been investigated to see the cross-coupling behavior of the proposed IHPS in the presence of voltage compensating devices like dynamic voltage restorer (DVR) and Static Synchronous Compensator (STATCOM). Further, Demand Response Scheme (DRS) as a frequency control strategy has been considered to enhance the system stability. System responses have been critically analyzed under Mine Blast Algorithm (MBA) based proportional–integral–derivative (PID) controllersSudhanshu RanjanAbdul LatifDulal Chandra DasNidul SinhaS.M. Suhail HussainTaha Selim UstunAtif IqbalElsevierarticleParabolic trough solar power system (PSP)Dish-stirling solar power system (DSP)Dynamic voltage restorer (DVR)Demand response scheme (DRS)Mine blast algorithm (MBA)Electrical engineering. Electronics. Nuclear engineeringTK1-9971ENEnergy Reports, Vol 7, Iss , Pp 7445-7459 (2021)
institution DOAJ
collection DOAJ
language EN
topic Parabolic trough solar power system (PSP)
Dish-stirling solar power system (DSP)
Dynamic voltage restorer (DVR)
Demand response scheme (DRS)
Mine blast algorithm (MBA)
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
spellingShingle Parabolic trough solar power system (PSP)
Dish-stirling solar power system (DSP)
Dynamic voltage restorer (DVR)
Demand response scheme (DRS)
Mine blast algorithm (MBA)
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
Sudhanshu Ranjan
Abdul Latif
Dulal Chandra Das
Nidul Sinha
S.M. Suhail Hussain
Taha Selim Ustun
Atif Iqbal
Simultaneous analysis of frequency and voltage control of the interconnected hybrid power system in presence of FACTS devices and demand response scheme
description This work confers the simultaneous analysis of voltage and frequency control of the 3-area interconnected hybrid power system (IHPS) consisting of parabolic-trough solar power system (PSP), wind power system (WPS) and dish-stirling solar power system (DSP) under the paradigm of microgrid. The speculated result of the IHPS is presented and analyzed considering real and reactive power as the function of both voltage and frequency. 9The proposed IHPS under investigation has been mathematically modeled for direct coupling like active power–frequency and reactive power–voltage relationships and cross coupling like active power–voltage and reactive power–frequency​ relationships. The system responses under different operating conditions have been investigated to see the cross-coupling behavior of the proposed IHPS in the presence of voltage compensating devices like dynamic voltage restorer (DVR) and Static Synchronous Compensator (STATCOM). Further, Demand Response Scheme (DRS) as a frequency control strategy has been considered to enhance the system stability. System responses have been critically analyzed under Mine Blast Algorithm (MBA) based proportional–integral–derivative (PID) controllers
format article
author Sudhanshu Ranjan
Abdul Latif
Dulal Chandra Das
Nidul Sinha
S.M. Suhail Hussain
Taha Selim Ustun
Atif Iqbal
author_facet Sudhanshu Ranjan
Abdul Latif
Dulal Chandra Das
Nidul Sinha
S.M. Suhail Hussain
Taha Selim Ustun
Atif Iqbal
author_sort Sudhanshu Ranjan
title Simultaneous analysis of frequency and voltage control of the interconnected hybrid power system in presence of FACTS devices and demand response scheme
title_short Simultaneous analysis of frequency and voltage control of the interconnected hybrid power system in presence of FACTS devices and demand response scheme
title_full Simultaneous analysis of frequency and voltage control of the interconnected hybrid power system in presence of FACTS devices and demand response scheme
title_fullStr Simultaneous analysis of frequency and voltage control of the interconnected hybrid power system in presence of FACTS devices and demand response scheme
title_full_unstemmed Simultaneous analysis of frequency and voltage control of the interconnected hybrid power system in presence of FACTS devices and demand response scheme
title_sort simultaneous analysis of frequency and voltage control of the interconnected hybrid power system in presence of facts devices and demand response scheme
publisher Elsevier
publishDate 2021
url https://doaj.org/article/bd105c166d15461fac405e0eafc076b2
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