Coordinated SPD Systems for Mitigating the Effect of Lightning-Induced Voltage on Hybrid Solar PV-Battery Energy Storage System
This paper discusses the effect of lightning-induced voltage on a hybrid solar photovoltaic (PV)-battery energy storage system (BESS) without an external lightning protection system (LPS). Solar PV generates electricity by converting solar energy and providing it to the user. In addition, battery en...
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my.uniten.dspace-345612024-10-14T11:20:40Z Coordinated SPD Systems for Mitigating the Effect of Lightning-Induced Voltage on Hybrid Solar PV-Battery Energy Storage System Ahmad N.I. Ab Kadir M.Z.A. Ali Z. Osman M. Roslan M.H. Zaini N.H. 56405049800 25947297000 25824589000 7201930315 56405424900 55865700900 BESS cable length emtp-rv hybrid solar PV lightning-induced voltage SPD Cables Electric batteries Electric inverters Lightning Photovoltaic effects Solar energy Solar power generation Battery energy storage Battery energy storage systems Cable length EMTP-RV Generate electricity Hybrid solar photovoltaic Lightning induced voltage Lightning protection systems Solar photovoltaics SPD Battery storage This paper discusses the effect of lightning-induced voltage on a hybrid solar photovoltaic (PV)-battery energy storage system (BESS) without an external lightning protection system (LPS). Solar PV generates electricity by converting solar energy and providing it to the user. In addition, battery energy storage is also utilised to supply consistency and satisfy the need for energy. However, because the system is installed in open spaces, lightning has always been a huge difficulty for it to work at optimal efficiency. In this paper, the single SPD Class I was installed near the inverter on the DC side. The study on cable length with various lightning current amplitude and lightning strike distance is conducted. The simulation findings found that the inverter is well protected by the SPD whereby the impulse withstand voltage is 6 kV, however, the solar PV-BESS is affected by the lightning-induced voltage regardless of any cable length. In this way, providing the requirement for an adequate SPD installation will ensure improved maintenance and extend the equipment's lifespan. � 2023 IEEE. Final 2024-10-14T03:20:40Z 2024-10-14T03:20:40Z 2023 Conference Paper 10.1109/APL57308.2023.10182043 2-s2.0-85166735477 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85166735477&doi=10.1109%2fAPL57308.2023.10182043&partnerID=40&md5=6c87ca68ef207dbdf12d6e2389f3ddf1 https://irepository.uniten.edu.my/handle/123456789/34561 Institute of Electrical and Electronics Engineers Inc. Scopus |
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BESS cable length emtp-rv hybrid solar PV lightning-induced voltage SPD Cables Electric batteries Electric inverters Lightning Photovoltaic effects Solar energy Solar power generation Battery energy storage Battery energy storage systems Cable length EMTP-RV Generate electricity Hybrid solar photovoltaic Lightning induced voltage Lightning protection systems Solar photovoltaics SPD Battery storage |
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BESS cable length emtp-rv hybrid solar PV lightning-induced voltage SPD Cables Electric batteries Electric inverters Lightning Photovoltaic effects Solar energy Solar power generation Battery energy storage Battery energy storage systems Cable length EMTP-RV Generate electricity Hybrid solar photovoltaic Lightning induced voltage Lightning protection systems Solar photovoltaics SPD Battery storage Ahmad N.I. Ab Kadir M.Z.A. Ali Z. Osman M. Roslan M.H. Zaini N.H. Coordinated SPD Systems for Mitigating the Effect of Lightning-Induced Voltage on Hybrid Solar PV-Battery Energy Storage System |
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This paper discusses the effect of lightning-induced voltage on a hybrid solar photovoltaic (PV)-battery energy storage system (BESS) without an external lightning protection system (LPS). Solar PV generates electricity by converting solar energy and providing it to the user. In addition, battery energy storage is also utilised to supply consistency and satisfy the need for energy. However, because the system is installed in open spaces, lightning has always been a huge difficulty for it to work at optimal efficiency. In this paper, the single SPD Class I was installed near the inverter on the DC side. The study on cable length with various lightning current amplitude and lightning strike distance is conducted. The simulation findings found that the inverter is well protected by the SPD whereby the impulse withstand voltage is 6 kV, however, the solar PV-BESS is affected by the lightning-induced voltage regardless of any cable length. In this way, providing the requirement for an adequate SPD installation will ensure improved maintenance and extend the equipment's lifespan. � 2023 IEEE. |
author2 |
56405049800 |
author_facet |
56405049800 Ahmad N.I. Ab Kadir M.Z.A. Ali Z. Osman M. Roslan M.H. Zaini N.H. |
format |
Conference Paper |
author |
Ahmad N.I. Ab Kadir M.Z.A. Ali Z. Osman M. Roslan M.H. Zaini N.H. |
author_sort |
Ahmad N.I. |
title |
Coordinated SPD Systems for Mitigating the Effect of Lightning-Induced Voltage on Hybrid Solar PV-Battery Energy Storage System |
title_short |
Coordinated SPD Systems for Mitigating the Effect of Lightning-Induced Voltage on Hybrid Solar PV-Battery Energy Storage System |
title_full |
Coordinated SPD Systems for Mitigating the Effect of Lightning-Induced Voltage on Hybrid Solar PV-Battery Energy Storage System |
title_fullStr |
Coordinated SPD Systems for Mitigating the Effect of Lightning-Induced Voltage on Hybrid Solar PV-Battery Energy Storage System |
title_full_unstemmed |
Coordinated SPD Systems for Mitigating the Effect of Lightning-Induced Voltage on Hybrid Solar PV-Battery Energy Storage System |
title_sort |
coordinated spd systems for mitigating the effect of lightning-induced voltage on hybrid solar pv-battery energy storage system |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2024 |
_version_ |
1814060104214904832 |
score |
13.209306 |