IoT-Based Solar Energy Measurement and Monitoring Model

In the early days, greenhouse energy did not pay much attention to coating inspections and new applications, spending more attention on repair solar energy projects instead. However, these attitudes have recently changed. Energy producers realize that preventing corrosion and deterioration is less e...

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Main Authors: L. Chitra, N. Vasantha Gowri, M. Maheswari, Dipesh Uike, N. R. Medikondu, Essam A. Al-Ammar, Ahmed Sayed Mohammed Metwally, Ataul Islam, Abdi Diriba
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:International Journal of Photoenergy
Online Access:http://dx.doi.org/10.1155/2022/5767696
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author L. Chitra
N. Vasantha Gowri
M. Maheswari
Dipesh Uike
N. R. Medikondu
Essam A. Al-Ammar
Ahmed Sayed Mohammed Metwally
Ataul Islam
Abdi Diriba
author_facet L. Chitra
N. Vasantha Gowri
M. Maheswari
Dipesh Uike
N. R. Medikondu
Essam A. Al-Ammar
Ahmed Sayed Mohammed Metwally
Ataul Islam
Abdi Diriba
author_sort L. Chitra
collection DOAJ
description In the early days, greenhouse energy did not pay much attention to coating inspections and new applications, spending more attention on repair solar energy projects instead. However, these attitudes have recently changed. Energy producers realize that preventing corrosion and deterioration is less expensive than solving the greenhouse problems when they occur. The proposed model also provides coating, paint control, and error analysis services within the scope of solar machinery and equipment-related services while the greenhouse equipment reached a low energy level. The greenhouse monitoring services ensure that a solar plant is economical, reliable, and of high quality, meets legal requirements, conforms to standards published by domestic and foreign organizations, and determines conditions that cause short circuits or power outages. In this context, with the help of cloud computing-based Internet of things (IOT), the industrial power stations, high-voltage substations, low-voltage networks, power stations that comply with legal regulations on safety from electricity, electrical installations for machinery, alarm systems, fire alarm systems, cathodic corrosion protection mechanisms in oil tanks and pipelines, emergency power supply installations, electrical installations in buildings, and gas alarm systems are inspected and documented.
format Article
id doaj-art-7d3597d178fb4bbbba010912f4794858
institution Kabale University
issn 1687-529X
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series International Journal of Photoenergy
spelling doaj-art-7d3597d178fb4bbbba010912f47948582025-02-03T01:01:21ZengWileyInternational Journal of Photoenergy1687-529X2022-01-01202210.1155/2022/5767696IoT-Based Solar Energy Measurement and Monitoring ModelL. Chitra0N. Vasantha Gowri1M. Maheswari2Dipesh Uike3N. R. Medikondu4Essam A. Al-Ammar5Ahmed Sayed Mohammed Metwally6Ataul Islam7Abdi Diriba8Department of Electrical and Electronics EngineeringDepartment of Electrical and Electronics EngineeringDepartment of Computer Science and EngineeringDr. Ambedkar Institute of Management Studies And ResearchDepartment of Mechanical EngineeringDepartment of Electrical EngineeringDepartment of MathematicsFaculty of BiologyDepartment of Mechanical EngineeringIn the early days, greenhouse energy did not pay much attention to coating inspections and new applications, spending more attention on repair solar energy projects instead. However, these attitudes have recently changed. Energy producers realize that preventing corrosion and deterioration is less expensive than solving the greenhouse problems when they occur. The proposed model also provides coating, paint control, and error analysis services within the scope of solar machinery and equipment-related services while the greenhouse equipment reached a low energy level. The greenhouse monitoring services ensure that a solar plant is economical, reliable, and of high quality, meets legal requirements, conforms to standards published by domestic and foreign organizations, and determines conditions that cause short circuits or power outages. In this context, with the help of cloud computing-based Internet of things (IOT), the industrial power stations, high-voltage substations, low-voltage networks, power stations that comply with legal regulations on safety from electricity, electrical installations for machinery, alarm systems, fire alarm systems, cathodic corrosion protection mechanisms in oil tanks and pipelines, emergency power supply installations, electrical installations in buildings, and gas alarm systems are inspected and documented.http://dx.doi.org/10.1155/2022/5767696
spellingShingle L. Chitra
N. Vasantha Gowri
M. Maheswari
Dipesh Uike
N. R. Medikondu
Essam A. Al-Ammar
Ahmed Sayed Mohammed Metwally
Ataul Islam
Abdi Diriba
IoT-Based Solar Energy Measurement and Monitoring Model
International Journal of Photoenergy
title IoT-Based Solar Energy Measurement and Monitoring Model
title_full IoT-Based Solar Energy Measurement and Monitoring Model
title_fullStr IoT-Based Solar Energy Measurement and Monitoring Model
title_full_unstemmed IoT-Based Solar Energy Measurement and Monitoring Model
title_short IoT-Based Solar Energy Measurement and Monitoring Model
title_sort iot based solar energy measurement and monitoring model
url http://dx.doi.org/10.1155/2022/5767696
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