Novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices

This paper novel multi-criteria designing framework of a grid-connected hybrid photovoltaic (PV)/wind turbine (WT) sustainable and clean energy system with battery (BA) storage (HPV/WT/BA) considering cost, reliability and emission costs are presented dependent on actual irradiance and wind speed pa...

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Main Authors: Amirreza, Naderipour, Zulkurnain, Abdul Malek, Shohreh, Nasri, Saber, Arabi Nowdeh, Hesam, Kamyab, Shreeshivadasan, Chelliapan, Mohd. Wazir, Mustafa, Abdullah Asuhaimi, Mohd. Zin
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Published: Italian Association of Chemical Engineering - AIDIC 2021
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Online Access:http://eprints.utm.my/id/eprint/95063/
http://dx.doi.org/10.3303/CET2183095
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.950632022-04-29T22:23:40Z http://eprints.utm.my/id/eprint/95063/ Novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices Amirreza, Naderipour Zulkurnain, Abdul Malek Shohreh, Nasri Saber, Arabi Nowdeh Hesam, Kamyab Shreeshivadasan, Chelliapan Mohd. Wazir, Mustafa Abdullah Asuhaimi, Mohd. Zin TK Electrical engineering. Electronics Nuclear engineering This paper novel multi-criteria designing framework of a grid-connected hybrid photovoltaic (PV)/wind turbine (WT) sustainable and clean energy system with battery (BA) storage (HPV/WT/BA) considering cost, reliability and emission costs are presented dependent on actual irradiance and wind speed patterns to include an annual load. The designing objective is optimal sizing of the HPV/WT/BA system to minimize the total net present cost (TNPC) as well as the loss of load and CO2 emission cost with satisfying reliability constraint as energy not supplied probability (ENSP) considering stand-alone and grid-connected modes. The results showed that purchasing the power from network reduced the TNPC and also improved the hybrid system reliability and the reliability constraint is in the allowable range. The results also showed the superiority of the moth flame optimizer than the well-known particle swarm optimization (PSO) algorithm in achieving to lower TNPC and better reliability. Italian Association of Chemical Engineering - AIDIC 2021 Article PeerReviewed Amirreza, Naderipour and Zulkurnain, Abdul Malek and Shohreh, Nasri and Saber, Arabi Nowdeh and Hesam, Kamyab and Shreeshivadasan, Chelliapan and Mohd. Wazir, Mustafa and Abdullah Asuhaimi, Mohd. Zin (2021) Novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices. Chemical Engineering Transactions, 83 . pp. 565-570. ISSN 2283-9216 http://dx.doi.org/10.3303/CET2183095
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/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Amirreza, Naderipour
Zulkurnain, Abdul Malek
Shohreh, Nasri
Saber, Arabi Nowdeh
Hesam, Kamyab
Shreeshivadasan, Chelliapan
Mohd. Wazir, Mustafa
Abdullah Asuhaimi, Mohd. Zin
Novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices
description This paper novel multi-criteria designing framework of a grid-connected hybrid photovoltaic (PV)/wind turbine (WT) sustainable and clean energy system with battery (BA) storage (HPV/WT/BA) considering cost, reliability and emission costs are presented dependent on actual irradiance and wind speed patterns to include an annual load. The designing objective is optimal sizing of the HPV/WT/BA system to minimize the total net present cost (TNPC) as well as the loss of load and CO2 emission cost with satisfying reliability constraint as energy not supplied probability (ENSP) considering stand-alone and grid-connected modes. The results showed that purchasing the power from network reduced the TNPC and also improved the hybrid system reliability and the reliability constraint is in the allowable range. The results also showed the superiority of the moth flame optimizer than the well-known particle swarm optimization (PSO) algorithm in achieving to lower TNPC and better reliability.
format Article
author Amirreza, Naderipour
Zulkurnain, Abdul Malek
Shohreh, Nasri
Saber, Arabi Nowdeh
Hesam, Kamyab
Shreeshivadasan, Chelliapan
Mohd. Wazir, Mustafa
Abdullah Asuhaimi, Mohd. Zin
author_facet Amirreza, Naderipour
Zulkurnain, Abdul Malek
Shohreh, Nasri
Saber, Arabi Nowdeh
Hesam, Kamyab
Shreeshivadasan, Chelliapan
Mohd. Wazir, Mustafa
Abdullah Asuhaimi, Mohd. Zin
author_sort Amirreza, Naderipour
title Novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices
title_short Novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices
title_full Novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices
title_fullStr Novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices
title_full_unstemmed Novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices
title_sort novel designing framework of stand-alone and grid-connected hybrid photovoltaic/wind/battery renewable energy system considering reliability, cost and emission indices
publisher Italian Association of Chemical Engineering - AIDIC
publishDate 2021
url http://eprints.utm.my/id/eprint/95063/
http://dx.doi.org/10.3303/CET2183095
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