Critical levels of rapid urbanization and skyrocketing population increase have been attained. Since air quality has a significant impact on human health and well-being, its monitoring has become an important task. This paper introduces the real-time Environment Tracking System (ETS) utilizing IoT that makes use of sensors DHT22, MQ135 GPS Module NODEMCU, and ThingSpeak. IoT-based ETS, which makes use of developments in embedded and sensor technologies, offers a cost-effective and adaptable substitute for conventional fixed monitoring systems. In order to effectively build IoT-based ETS architectures, the study performs an extensive assessment of enabling technologies, including sensors, communication protocols, and data processing algorithms. In addition, the discourse explores the importance of temperature and humidity in addition to air quality, taking into account their combined impacts on environmental circumstances. This research attempts to provide insights into the complex trade-offs involved in deploying IoT-based ETS by shedding light on the benefits and drawbacks of various technologies. In the end, it aims to provide a complete solution to resolve environmental issues.

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Design and Implementation of Real-Time Environment Tracking System Using Internet of Things (IoT)

  • Ajeet Singh,
  • Sanjay Singh,
  • Rupali Mahajan

摘要

Critical levels of rapid urbanization and skyrocketing population increase have been attained. Since air quality has a significant impact on human health and well-being, its monitoring has become an important task. This paper introduces the real-time Environment Tracking System (ETS) utilizing IoT that makes use of sensors DHT22, MQ135 GPS Module NODEMCU, and ThingSpeak. IoT-based ETS, which makes use of developments in embedded and sensor technologies, offers a cost-effective and adaptable substitute for conventional fixed monitoring systems. In order to effectively build IoT-based ETS architectures, the study performs an extensive assessment of enabling technologies, including sensors, communication protocols, and data processing algorithms. In addition, the discourse explores the importance of temperature and humidity in addition to air quality, taking into account their combined impacts on environmental circumstances. This research attempts to provide insights into the complex trade-offs involved in deploying IoT-based ETS by shedding light on the benefits and drawbacks of various technologies. In the end, it aims to provide a complete solution to resolve environmental issues.