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Leveraging Wireless Sensor Networks for Real-Time Monitoring and Control of Industrial Environments
Conference proceeding

Leveraging Wireless Sensor Networks for Real-Time Monitoring and Control of Industrial Environments

Muhammad Junaid Asif, Abdul Rehman, Asim Mehmood, Muhammad Hamza, Rana Fayyaz Ahmad and Shazia Saqib
2026 International Conference on Information Science and Communication Technology (ICISCT)
International Conference on Information Science and Communication Technology (ICISCT2026) (Karachi, Pakistan, 15/04/2026–16/04/2026)
04/2026

Abstract

Fire detection Fires Image sensors Industrial parameters monitoring Internet Internet of Things Internet of Things (IoT) Joining processes Monitoring PIN photodiodes Pins Printing Soil moisture measurement Temperature measurement Timing Wireless Sensor Network (WSN)
This research proposes an extensive technique for monitoring and controlling the industrial parameters using Internet of Things (IoT) technology based on wireless communication. We propose a system based on NRF transceivers to establish a strong Wireless Sensor Network (WSN), enabling transfer of real-time data from multiple sensors to a central setup that is driven by Arduino microcontrollers. Different key parameters, crucial for industrial setup, such as temperature, humidity, soil moisture and fire detection, are monitored and displayed on an LCD screen, enabling factory administration to remotely oversee the industrial operations remotely over the internet. Our proposed system eliminates the need for physical presence during monitoring by addressing the shortcomings of conventional wired communication systems. In addition to monitoring, the system includes an additional feature to remotely control these parameters by controlling the speed of DC motors through online commands. Given the rising incidence of industrial fires worldwide between 2020 and 2024 due to an array of hazards, this system with dual functionality boosts the overall operational efficiency and safety. This overall integration of IoT and Wireless Sensor Network (WSN) reduces the potential risks linked with physical monitoring, providing rapid responses in emergency scenarios, including the activation of firefighting equipment. The results demonstrate that innovations in wireless communication are essential in the process of industrial process automation and safety and create an opportunity for the creation of more intelligent and responsive operating environment. Overall, this study highlights the potential for change of IoT-enabled systems to revolutionize monitoring and control in a variety of industrial applications, resulting in increased productivity and safety.

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