Theoretical Analysis on the Micro Gas Turbine Integrated Solar Farm for Power Output Stabilization

Solar farm could not penetrate grid at substantial amount because it could disturb the grid operation due to its fluctuation output. This, the objective of this study is to theoretically analyze the power output stabilization of a solar farm by integration of Micro Gas Turbine (MGT). A 1MW scale of...

Full description

Bibliographic Details
Main Authors: Basrawi Firdaus, Al-Anati A.I.M., Ibrahim Thamir K., Yusof Mohd Hazwan, Razak A.A., Sulaiman Shaharin Anuar, Yamada Takanobu
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201822504012
id doaj-fa88e4c8bb2c44938d99f48d960555fd
record_format Article
spelling doaj-fa88e4c8bb2c44938d99f48d960555fd2021-02-02T08:46:54ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012250401210.1051/matecconf/201822504012matecconf_ses2018_04012Theoretical Analysis on the Micro Gas Turbine Integrated Solar Farm for Power Output StabilizationBasrawi FirdausAl-Anati A.I.M.Ibrahim Thamir K.Yusof Mohd HazwanRazak A.A.Sulaiman Shaharin AnuarYamada TakanobuSolar farm could not penetrate grid at substantial amount because it could disturb the grid operation due to its fluctuation output. This, the objective of this study is to theoretically analyze the power output stabilization of a solar farm by integration of Micro Gas Turbine (MGT). A 1MW scale of solar farm was first designed according to IEC 60364-5-52:2003, MS281837 and AMBO Chart method. Then, designed solar farm and MGT were modelled and simulated Simulink. In this study, both system need to stabilize power output at 800 kW throughout the year. It was found that it is possible to balance the power output of the solar farm to have constant power output throughout the year at 800 kW. However, all MGTs frequently operated at partial load that decreased their efficiency. Thus, it is possible to solve the solar farm problem with the technique, but further investigation the environmental and economic impact in comparison with a conventional power generation and a solar farm only is needed.https://doi.org/10.1051/matecconf/201822504012
collection DOAJ
language English
format Article
sources DOAJ
author Basrawi Firdaus
Al-Anati A.I.M.
Ibrahim Thamir K.
Yusof Mohd Hazwan
Razak A.A.
Sulaiman Shaharin Anuar
Yamada Takanobu
spellingShingle Basrawi Firdaus
Al-Anati A.I.M.
Ibrahim Thamir K.
Yusof Mohd Hazwan
Razak A.A.
Sulaiman Shaharin Anuar
Yamada Takanobu
Theoretical Analysis on the Micro Gas Turbine Integrated Solar Farm for Power Output Stabilization
MATEC Web of Conferences
author_facet Basrawi Firdaus
Al-Anati A.I.M.
Ibrahim Thamir K.
Yusof Mohd Hazwan
Razak A.A.
Sulaiman Shaharin Anuar
Yamada Takanobu
author_sort Basrawi Firdaus
title Theoretical Analysis on the Micro Gas Turbine Integrated Solar Farm for Power Output Stabilization
title_short Theoretical Analysis on the Micro Gas Turbine Integrated Solar Farm for Power Output Stabilization
title_full Theoretical Analysis on the Micro Gas Turbine Integrated Solar Farm for Power Output Stabilization
title_fullStr Theoretical Analysis on the Micro Gas Turbine Integrated Solar Farm for Power Output Stabilization
title_full_unstemmed Theoretical Analysis on the Micro Gas Turbine Integrated Solar Farm for Power Output Stabilization
title_sort theoretical analysis on the micro gas turbine integrated solar farm for power output stabilization
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Solar farm could not penetrate grid at substantial amount because it could disturb the grid operation due to its fluctuation output. This, the objective of this study is to theoretically analyze the power output stabilization of a solar farm by integration of Micro Gas Turbine (MGT). A 1MW scale of solar farm was first designed according to IEC 60364-5-52:2003, MS281837 and AMBO Chart method. Then, designed solar farm and MGT were modelled and simulated Simulink. In this study, both system need to stabilize power output at 800 kW throughout the year. It was found that it is possible to balance the power output of the solar farm to have constant power output throughout the year at 800 kW. However, all MGTs frequently operated at partial load that decreased their efficiency. Thus, it is possible to solve the solar farm problem with the technique, but further investigation the environmental and economic impact in comparison with a conventional power generation and a solar farm only is needed.
url https://doi.org/10.1051/matecconf/201822504012
work_keys_str_mv AT basrawifirdaus theoreticalanalysisonthemicrogasturbineintegratedsolarfarmforpoweroutputstabilization
AT alanatiaim theoreticalanalysisonthemicrogasturbineintegratedsolarfarmforpoweroutputstabilization
AT ibrahimthamirk theoreticalanalysisonthemicrogasturbineintegratedsolarfarmforpoweroutputstabilization
AT yusofmohdhazwan theoreticalanalysisonthemicrogasturbineintegratedsolarfarmforpoweroutputstabilization
AT razakaa theoreticalanalysisonthemicrogasturbineintegratedsolarfarmforpoweroutputstabilization
AT sulaimanshaharinanuar theoreticalanalysisonthemicrogasturbineintegratedsolarfarmforpoweroutputstabilization
AT yamadatakanobu theoreticalanalysisonthemicrogasturbineintegratedsolarfarmforpoweroutputstabilization
_version_ 1724296407968382976