An innovative solution has been developed to address the challenges of real-time monitoring of environmental parameters in today's interconnected world. Leveraging sensors, microcontrollers, and internet connectivity, the system efficiently collects and visualizes data from temperature, ultrasonic, and water level sensors. By utilizing an Arduino Uno microcontroller and an ESP8266 Wi-Fi module, the system seamlessly gathers data from these sensors and transfers it to a web server for display and analysis. This integration of hardware components enables the system to collect data in real-time, ensuring up-to-date and accurate monitoring of environmental conditions. This enhances the functionality of the system; a GPS module is integrated to provide geographical information alongside the sensor readings. This integration allows for spatial analysis and the identification of location-specific trends and patterns. Additionally, the comprehensive system features a user-friendly web interface for data analysis, empowering users to make informed decisions based on real-time and historical data. The web interface enables users to visualize the collected data, monitor environmental conditions, and access historical records for trend analysis and comparison.

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Real Time Monitoring for Efficient Drainage System

  • K. Pranathi,
  • Nabi Unissa,
  • Nigama Srivatsava,
  • Aakanksha Gaikwad,
  • N. Haveela

摘要

An innovative solution has been developed to address the challenges of real-time monitoring of environmental parameters in today's interconnected world. Leveraging sensors, microcontrollers, and internet connectivity, the system efficiently collects and visualizes data from temperature, ultrasonic, and water level sensors. By utilizing an Arduino Uno microcontroller and an ESP8266 Wi-Fi module, the system seamlessly gathers data from these sensors and transfers it to a web server for display and analysis. This integration of hardware components enables the system to collect data in real-time, ensuring up-to-date and accurate monitoring of environmental conditions. This enhances the functionality of the system; a GPS module is integrated to provide geographical information alongside the sensor readings. This integration allows for spatial analysis and the identification of location-specific trends and patterns. Additionally, the comprehensive system features a user-friendly web interface for data analysis, empowering users to make informed decisions based on real-time and historical data. The web interface enables users to visualize the collected data, monitor environmental conditions, and access historical records for trend analysis and comparison.