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1708826PublishedVol 8 · Issue 11

ESP Based Weather Station

Shubham Kumar Pandey Simran Srivastava Vinay Kumar Singh Dr. Vinay Kumar

Subject area: Science,Engineering and Technology  ·  Area of research: Weather Station

Abstract

One of the most important applications of weather monitoring is agriculture, disaster management, and environmental research. This paper describes the design implementation of ESP8266 based weather station which is low cost and energy efficient for real-time weather tracking. It measures environmental parameters with the integrated sensors like Temperature, Humidity, Atmosphere Pressure, and Light Intensity. Utilizing the built-in Wi-Fi features of the ESP8266microcontroller, the data can also be streamed wirelessly to cloud platforms for storage and later access. This proposed system overcomes the challenges of traditional weather stations like high cost and limited scalability by providing a lightweight, low-cost, and customizable alternative for sensing environmental data. With the use of IoT technology, users can check the weather conditions in real-time on the web dashboard or mobile apps. Moreover, the architecture is low power, allowing deployment in unconnected or off-grid conditions. In this paper, we assess the accuracy, reliability and energy efficiency of the ESP8266 based weather station. Results show that this work has far-reaching applications in a variety of disciplines that need localized weather data. In conclusion, it is appointed the flexibility and scalability of the system as a promising tool of development of new IoT based environmental monitoring solutions.

How to cite this paper

Shubham Kumar Pandey, Simran Srivastava, Vinay Kumar Singh, Dr. Vinay Kumar "ESP Based Weather Station" Iconic Research And Engineering Journals Volume 8 Issue 11 2025 Page 1725-1730
Shubham Kumar Pandey, Simran Srivastava, Vinay Kumar Singh, Dr. Vinay Kumar "ESP Based Weather Station" Iconic Research And Engineering Journals, vol. 8, no. 11, May. 2025
Shubham Kumar Pandey, Simran Srivastava, Vinay Kumar Singh, Dr. Vinay Kumar (2025). ESP Based Weather Station. Iconic Research And Engineering Journals, 8(11).
Shubham Kumar Pandey, Simran Srivastava, Vinay Kumar Singh, Dr. Vinay Kumar "ESP Based Weather Station" Iconic Research And Engineering Journals, vol. 8, no. 11, May. 2025.
@article{1708826,
      author = {Shubham Kumar Pandey, Simran Srivastava, Vinay Kumar Singh, Dr. Vinay Kumar},
      title = {ESP Based Weather Station},
      journal = {Iconic Research And Engineering Journals},
      year = {2025},
      volume = {8},
      number = {11},
      pages = {1725-1730},
      issn = {2456-8880},
      url = {https://www.irejournals.com/formatedpaper/1708826.pdf},
      abstract = {One of the most important applications of weather monitoring is agriculture, disaster management, and environmental research. This paper describes the design implementation of ESP8266 based weather station which is low cost and energy efficient for real-time weather tracking. It measures environmental parameters with the integrated sensors like Temperature, Humidity, Atmosphere Pressure, and Light Intensity. Utilizing the built-in Wi-Fi features of the ESP8266microcontroller, the data can also be streamed wirelessly to cloud platforms for storage and later access. This proposed system overcomes the challenges of traditional weather stations like high cost and limited scalability by providing a lightweight, low-cost, and customizable alternative for sensing environmental data. With the use of IoT technology, users can check the weather conditions in real-time on the web dashboard or mobile apps. Moreover, the architecture is low power, allowing deployment in unconnected or off-grid conditions. In this paper, we assess the accuracy, reliability and energy efficiency of the ESP8266 based weather station. Results show that this work has far-reaching applications in a variety of disciplines that need localized weather data. In conclusion, it is appointed the flexibility and scalability of the system as a promising tool of development of new IoT based environmental monitoring solutions.},
      month = {May},
  }