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An Automobile Temperature Monitoring and Alert System Using Internet of Things [IOT]
Subject area: Science,Engineering and Technology · Area of research: Internet of Things
Abstract
The aim of this study is to develop an IoT base system that can detect and monitor overheating in automobile vehicles using temperature alarm architecture. The objective of this study is to develop a constant beep alarm technology that can alert vehicle owners when the engine is overheating while displaying the temperature level on the vehicle dashboard, the system will automatically generate data on the readings of vehicle temperature and send to the storage device for future uses, to design an automatic diagnostic solution on the dashboard in case of emergency situation on engine overheating and to provide a system that can make monitoring and fast detection of vehicle engine temperature faster for the elderly (bad sight) and disabled persons. The motivation behind this study includes: lack of vehicle beeping alarm system which enable car owners to control the temperature and humidity gauge reading of their car and lack of immediate diagnostic measure when emergency on vehicle engine overheating occurs. The proposed system adopted the Object Oriented Analysis Design Methodology (OOADM), ARDIUNO IDE, DHT11 temperature and humidity sensor, and MYSQL XAMPP SERVER was used for the database design. The result was an IoT enabled device that was able to detect raise in temperature of a vehicle with a beeping alarm sign.
Keywords
Internet of Things, temperature alarm architecture, overheating of automobile vehicles.
References
[1] CharithPerera, Chi Harold Liu, SrimalJayawardena (2015) The Emerging Internet of Things marketplace From an Industrial Perspective: A Survey”,IEEE transactions on emerging topics in computing.
[2] Soumyalatha, Shruti G Hegde (2016) Study of IoT: Understanding IoT Architecture, Applications, Issues and Challenges, International Journal of Advanced Networking & Applications (IJANA) ISSN: 0975-0282
[3] Jayavardhana Gubbia, Rajkumar Buyyab, Slaven Marusic & Marimuthu Palaniswami, (2013) Internet of Things (IoT): A vision, architectural elements, and Jayavardhana Gubbia, Rajkumar Buyyab, Slaven Marusic a, Marimuthu Palaniswami, (2013), Internet of Things (IoT): A vision, architectural elements, and future directions”, Future Generation Computer Systems, Elsevier. Kevin Ashton (2017). Internet of things (IoT) advantages on e-learning in the smart cities. International Journal of Development Research, 7(12), 17747-17753.
[4] Soumyalatha, Shruti G Hegde (2017) Study of IoT: Understanding IoT Architecture, Applications, Issues and Challenges, International Journal of Advanced Networking & Applications (IJANA) ISSN: 0975-0282
[5] Madakam, S., Lake, V., Lake, V., & Lake, V. (2015). Internet of Things (IoT): A literature review. Journal of Computer and Communications, 3(05), 164.
[6] Ferrovial U.A (2022) Internet of Things (IOT) Retrieved https://www.ferrovial.com/en-us/innovation/technologies/internet-of-things/
[7] CharithPerera, Chi Harold Liu, SrimalJayawardena (2015) The Emerging Internet of Things marketplace From an Industrial Perspective: A Survey”, IEEE transactions on emerging topics in computing.
[8] ZHANG Ying-conga, YU Jingb (2014), A Study on the Fire IOT Development Strategy‖, Int. J. of Safety and Security Eng., Vol. 4, No. 2, pp(135–142)
[9] Bandyopadhyay, D., &Sen, J. (2011). Internet of things: Applications and challenges in technology and standardization. Wireless personal communications, 58, 49-69.
[10] Soumyalatha, Shruti G Hegde (2017) Study of IoT: Understanding IoT Architecture, Applications, Issues and Challenges, International Journal of Advanced Networking & Applications (IJANA) ISSN: 0975-0282
[11] Ackodrive (2022), Different types of sensors in a car and its functions, accessed from https://ackodrive.com/car-guide/different-types-of-car-sensors/
[12] YashaswiRahut , RimshaAfreen, DivyaKamini (2018) “ Smart weather monitoring and real time alert system using IoT”, International Research Journal of Engineering and Technology (IRJET), Volume: 05 Issue: 10
[13] Vatsal, S., &Bhavin, M. (2017). Using raspberry pi to sense temprature and relative humidity. Int. Res. J. Eng. Technol, 4(2), 380-385.
[14] Anusha, A., & Ahmed, S. M. (2017, July). Vehicle tracking and monitoring system to enhance the safety and security driving using IoT. In 2017 international conference on recent trends in electrical, electronics and computing technologies (ICRTEECT) (pp. 49-53). IEEE.
[15] Srinivasan, A. (2018). Iot cloud based real time automobile monitoring system. In 2018 3rd IEEE International Conference on Intelligent Transportation Engineering (ICITE) (pp. 231-235). IEEE.
[16] Ni, F., Wei, J., &Shen, J. (2018). An Internet of Things (IoTs) based intelligent life monitoring system for vehicles. In 2018 IEEE 3rd Advanced Information Technology, Electronic and Automation Control Conference (IAEAC) (pp. 532-535). IEEE.
[17] Kamalakar, S. S., &Vanjale, M. S. (2017). Notifying and inspecting vehicle emission and temperature of vehicle engine. Conference on Emerging Devices and Smart Systems (ICEDSS) (pp. 5-8). IEEE.
[18] Chougule and Suganthi (2018)Chougule, A. R., &Suganthi, K. (2018). IOT Based Smart Car Monitoring System. In 2018 Tenth International Conference on Advanced Computing (ICoAC) (pp. 281-285). IEEE.
[19] Jacob, C. M., George, N., Lal, A., George, R. J., Antony, M., & Joseph, J. (2020, June). An IoT based smart monitoring system for vehicles. In 2020 4th International Conference on Trends in Electronics and Informatics (ICOEI)(48184) (pp. 396-401). IEEE.
[20] Rahman, R., Hashim, U. R. A., & Ahmad, S. (2020). IoT based temperature and humidity monitoring framework. Bulletin of Electrical Engineering and Informatics, 9(1), 229-237.
How to cite this paper
@article{1704186,
author = {Obichere Chigozie Daniel, Olebara Comfort Chinaza, Oguoma Ikechukwu Stanley},
title = {An Automobile Temperature Monitoring and Alert System Using Internet of Things [IOT]},
journal = {Iconic Research And Engineering Journals},
year = {2023},
volume = {6},
number = {9},
pages = {214-220},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1704186.pdf},
abstract = {The aim of this study is to develop an IoT base system that can detect and monitor overheating in automobile vehicles using temperature alarm architecture. The objective of this study is to develop a constant beep alarm technology that can alert vehicle owners when the engine is overheating while displaying the temperature level on the vehicle dashboard, the system will automatically generate data on the readings of vehicle temperature and send to the storage device for future uses, to design an automatic diagnostic solution on the dashboard in case of emergency situation on engine overheating and to provide a system that can make monitoring and fast detection of vehicle engine temperature faster for the elderly (bad sight) and disabled persons. The motivation behind this study includes: lack of vehicle beeping alarm system which enable car owners to control the temperature and humidity gauge reading of their car and lack of immediate diagnostic measure when emergency on vehicle engine overheating occurs. The proposed system adopted the Object Oriented Analysis Design Methodology (OOADM), ARDIUNO IDE, DHT11 temperature and humidity sensor, and MYSQL XAMPP SERVER was used for the database design. The result was an IoT enabled device that was able to detect raise in temperature of a vehicle with a beeping alarm sign.},
keywords = {Internet of Things, temperature alarm architecture, overheating of automobile vehicles.},
month = {March},
}