HomeInternational Journal of Multidisciplinary: Applied Business and Education Researchvol. 5 no. 7 (2024)

Server Room Temperature Remote Monitoring System

Josan D. Tamayo | Angelo M. Reyes

Discipline: information systems

 

Abstract:

The COVID-19 pandemic creates more significant opportunities to develop more Internet of Things-based systems. IoT has been helpful in remote monitoring and control of connected devices. This research aims to develop a Room Temperature Remote Monitoring System using an Arduino Board and Cloud storage. It provides remote room temperature monitoring, real-time reports and graphs, and a 3-way alert/alarm system when the observed temperature is out of range. The prototype developed is compared to the room thermometer and provides accurate results.



References:

  1. Alam et al. (2016). International Journal of Bio-Science and Bio-Technology
  2. Bokingkito, P. Jr. & Llantos, O. (2017). Design and Implementation of Real-Time Mobile-based Water Temperature Monitoring System.
  3. Dangi, Nagendra (2017). They monitor envi-ronmental parameters, humidity, and temperature using Arduino-based micro-controllers and sensors. Available: https://www.theseus.fi/bitstream/handle/10024/142235/Dangi_Nagendra.pdf?sequence=1&isAllowed=y&fbclid=IwAR2vyk9g85rrUSHQoOdBTaOqmL-2ZwzB_8PoXA7he-8UgAmm-NWVg8dVws4
  4. El-Rubaiy, Meream (2016). Remote Tempera-ture Monitoring of Electronic Systems. Available: http://www.diva-por-tal.org/smash/get/diva2:956589/FULLTEXT01.pdf.
  5. Server Room Temperature & Humidity Monitoring Based on Internet of Things (IoT).
  6. M., Cynthia, Logsdon. (2022). Technology Use During COVID-19 Pandemic. Doi: 10.1097/cin.0000000000000906
  7. Mukesh, Chandra., Kunal, Kumar., Prabhat, Thakur., Somnath, Chattopadhyaya., Fi-roz, Alam., Satish, Kumar. (2022). Digital technologies, healthcare, and Covid-19: insights from developing and emerging nations. Health technology, doi: 10.1007/s12553-022-00650-1
  8. Purwanto, F & Utami, Ema & Pramono, Eko. (2018). Implementation and Optimization of Server Room Temperature and Humid-ity Control System using Fuzzy Logic Based on Microcontroller. Journal of Physics: Conference Series. 1140. 012050. 10.1088/1742-6596/1140/1/012050.
  9. Ridwan, Mohammad & Djamaludin, Djam-aludin & Roqib, Muhammad. (2020). Pro-totype Monitoring Temperature and Hu-midity Sensor Room Server-Based
  10. Shaun, Alexander, Spath, I. (2023). Managers’ Lived Experience with Technology in the Mortgage Industry During the COVID-19 Pandemic. International Journal of Man-agement Science and Business Admin-istration, doi: 10.18775/ijmsba.1849-5664-5419.2014.93.1001
  11. Suratman, Nur., Sheak, Salman., Akka, Habib., Syed, Mithun, Ali., Ali, AlArjani., Hasin, Md., Muhtasim, Taqi. (2022). Improving the benefits and cost of using emerging technologies for sustainable recovery from COVID-19 in manufacturing indus-tries. Frontiers in Environmental Science, doi: 10.3389/fenvs.2022.1025048 Inter-net of Things (IoT). 10.4108/eai.23-11-2019.2301576.
  12. Utomo, Moechammad & Aziz, Abdul & Winar-no, & Harjito, Bambang. (2019). Server Room Temperature & Humidity Monitor-ing Based on the Internet of Things (IoT). Journal of Physics: Conference Series. 1306. 012030. 10.1088/1742-6596/1306/1/012030.
  13. Wijaya, Rico & Christian, Vincent & Yuwanan-da, Yustika & Alexander, Ivan. (2019). Temperature and Humidity Monitoring System in Server Room Using Raspberry Pi. International Journal of Scientific & Technology Research. 8. 3075-3078.
  14. Yunita, Arga, Dini., Debora, Bukuku. (2022). A perspective of technology among healthcare providers after the pandemic. Innovation in Health for Society, doi: 10.31603/ihs.84)