Development of a Wifi-based IoT Weather Monitoring System

Authors

  • Innocent, C Department of Telecommunications Engineering, Federal University of Technology Minna Author
  • Abdulkadir, O. A Department of Telecommunications Engineering, Federal University of Technology Minna Author
  • Usman, A. U Department of Telecommunications Engineering, Federal University of Technology Minna Author
  • Zubair, S. Department of Telecommunications Engineering, Federal University of Technology Minna Author
  • Anunuso, J. C. Department of Mechatronics Engineering, Federal University of Technology Minna Author
  • Jack, K. E Department of Mechatronics Engineering, Federal University of Technology Minna Author
  • Abdullahi, H. M Department of Telecommunications Engineering, Federal University of Technology Minna. Author

Keywords:

Arduino IDE, HTTP display protocol, Sensor, Serial monitor, Weather monitoring

Abstract

Knowing the live environmental condition is one of the most important problems in the modern world since measuring the live environmental condition presents lots of challenges. This issue will be resolved by the suggested system because it tracks current weather conditions. It shall be ensured that the system successfully tracks the Gidan Kwano Region's live weather parameters. Using the Internet of Things, the suggested system will operate on a client-server architectural model. The architecture of the system is two-tiered. The suggested system has several sensors that will track the system's light intensity, humidity, and local temperature. This paper shows the data on the webserver and monitors the real-time weather data using the sensors. A webserver allows anyone to monitor the weather condition from anywhere without relying on any application or website. The sensor collected data and sent it to the node MCU controller. The Arduino IDE is used to upload the sensed data. The serial monitor serves as a gateway between the sensor and the cloud. The sensor pushes the data on a serial monitor, which monitors an IP address. The data is accessible to the public via the webserver. The proposed system measures the Gidan Kwano Region's weather conditions, and after obtaining data from the different sensors, it is discovered that the suggested model outperforms the conventional weather technique.

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Published

25-12-2025

How to Cite

Development of a Wifi-based IoT Weather Monitoring System. (2025). Confluence Journal of Pure and Applied Science, 4(2), 120-140. https://cjpas.org.ng/index.php/pub/article/view/98

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