Temperature Monıtorıng of Chıllıng System Usıng IoT Technıques


Authors : Nisanth G; Dhanushree D; V. Vishnu Priya; S. Keerthana

Volume/Issue : Volume 9 - 2024, Issue 7 - July


Google Scholar : https://tinyurl.com/4vmcaxjw

Scribd : https://tinyurl.com/ya9ty35w

DOI : https://doi.org/10.38124/ijisrt/IJISRT24JUL1535

Note : A published paper may take 4-5 working days from the publication date to appear in PlumX Metrics, Semantic Scholar, and ResearchGate.


Abstract : The chilling of milk in dairy sector is important to increase the life time of the milk as well as the quality of milk. The chilling of milk means rapid cooling of raw milk sufficiently at low temperature so that the growth of microorganisms present in the milk is tested. During the chilling process the temperature of milk should be reduced to less than 10°C. The manual process of monitoring the temperature of chilling system continuously is impossible and the continuous running of the compressor is not feasible. Maintaining the chill water temperature at the required level increases the efficiency and the cost of electricity is reduced due to the compressor maintenance. This project aims to continuously monitor the temperature of chiller using IoT techniques. The temperature monitoring sensor helps to send the reading of chiller temperature regularly. If the chiller temperature goes at high rate NodeMCU (Node Micro Controller Unit)-ESP8266 and IFTT application are used as an interface between the user and microcontroller to generate and send the notification to the end users.

Keywords : IoT Sensors, IFTTT, Energy Efficiency, Cloud Databases, Real Time Monitoring.

References :

  1. H. Sun, G. Jiang, Q. Kong, Z. Chen, and X. Li, “Design of Real-Time Monitoring System on Raw Milk Transport Process,” IJMUE, vol. 11, no. 4, pp. 335–342, Apr. 2016, doi: 10.14257/ijmue.2016.11.4.33.
  2. W. Zhang, T. Cheng, H. Chen, X. Guo, and G. Gao, “Design of Temperature Monitoring System for Raw Milk Transportation Based on TRIZ Theory,” IOP Conf. Ser.: Mater. Sci. Eng., vol. 439, p. 032098, Nov. 2018, doi: 10.1088/1757-899X/439/3/032098.
  3. S. P. Sakti, T. Putro, D. Anggraeni, A. Naba, and V. R. Wijayanto, “IoT-Based Temperature Monitoring for Milk Collection Tank in Remote Area,” in Proceedings of the 2022 Brawijaya International Conference (BIC 2022), vol. 235, Y. A. Yusran, F. G. M. Fitri, T. A. Wihastuti, F. A. Nugroho, and I. D. Qurbani, Eds., in Advances in Economics, Business and Management Research, vol. 235. , Dordrecht: Atlantis Press International BV, 2023, pp. 227–234. doi: 10.2991/978-94-6463-140-1_22.
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  5. C. Calderon-Cordova, J. Criollo, J. Fernandez, D. Japon, R. Remache, and C. Ramirez, “Temperature monitoring system for the pasteurization process applied to the small dairy industry,” in 2018 13th Iberian Conference on Information Systems and Technologies (CISTI), Caceres: IEEE, Jun. 2018, pp. 1–7. doi: 10.23919/CISTI.2018.8399294.
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The chilling of milk in dairy sector is important to increase the life time of the milk as well as the quality of milk. The chilling of milk means rapid cooling of raw milk sufficiently at low temperature so that the growth of microorganisms present in the milk is tested. During the chilling process the temperature of milk should be reduced to less than 10°C. The manual process of monitoring the temperature of chilling system continuously is impossible and the continuous running of the compressor is not feasible. Maintaining the chill water temperature at the required level increases the efficiency and the cost of electricity is reduced due to the compressor maintenance. This project aims to continuously monitor the temperature of chiller using IoT techniques. The temperature monitoring sensor helps to send the reading of chiller temperature regularly. If the chiller temperature goes at high rate NodeMCU (Node Micro Controller Unit)-ESP8266 and IFTT application are used as an interface between the user and microcontroller to generate and send the notification to the end users.

Keywords : IoT Sensors, IFTTT, Energy Efficiency, Cloud Databases, Real Time Monitoring.

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