ARM-Based Industrial Monitoring and Safety Control System Using STM32 Microcontroller
view PDF
view PDF

How to Cite

Kale, Shreyash, Manthan Nalbilwar, Onkar Admute, Sonali Raut, and Pratik Mane. 2026. “ARM-Based Industrial Monitoring and Safety Control System Using STM32 Microcontroller”. Journal of Electronics and Informatics 8 (3): 261-72. https://doi.org/10.36548/jei.2026.3.005.

Keywords

Industrial Monitoring
STM32 Microcontroller
ARM-Based System
Gas Leakage Detection
Flame Detection
Temperature Monitoring
Water Leakage Detection
Industrial Safety

Abstract

In recent time, industries are facing safety issues such as gas leakage, fires, abnormal temperature rise and water leakage, which can cause huge losses to enterprises by damaging equipment or halting production and risk the life of workers working in that area. In industrial environment, such safety hazards can be avoided by using an ARM based industrial monitoring and safety control system with STM32F103C8T6 microcontroller. In this paper, the MQ135 gas sensor, LM35 temperature sensor, flame sensor and water leak sensor is used to continuously monitor the environmental and security parameters. The STM32 processes the data received from sensors and compares them to the safety threshold limits to detect any threat. In case of normal parameters system, relay-based safety systems get activated and sound signals through buzzer are produced whereas warning messages are displayed on LCD Screen. The other feature area included the implementation of a monitoring dashboard that shows the sensor outputs.

References

  1. Zhai, Yuyi, Houyong Jiang, Yunjia Liu, Tao Jiang, and Le Wang. "Design of Motor Online Monitoring System Based on ARM." In Journal of Physics: Conference Series, IOP Publishing, 2021, vol. 1948, no. 1: 012164.
  2. Kayan, Hakan. "Anomaly Detection in Industrial Robotic Arms Using Edge-Based IoT Systems." PhD dissertation., Cardiff University, 2025.
  3. Coboi, Alberto, Nam Pham Van, and Oraiden Manuel Sabonete. "Application of ARM-Based Integrated Circuits and Wireless Sensor Networks in the Development of a Data-Logging System for Coal and Mineral Plants in Vietnam." Journal Européen des Systèmes Automatisés 2026, vol 59, no. 3: 631.
  4. Ma, Tengfei, Guangda Lu, Zhuanping Qin, and Zheng Li. "STM32-Based Control System Design for Orbiting Binocular Vision Mobile Platforms." Journal of Robotics and Mechatronics 2025, vol 37, no. 5: 1230-1245.
  5. Sastry, M. K. S., and Larry Seekumar. "Automation of Real Time Monitoring and Controlling of a Marine Loading Arm." Journal of Engineering, Design and Technology 2012, vol 10, no. 2: 217-227.
  6. Nithya, N., and D. R. S. Jayanthi. "Arm Based Real-Time Monitoring and Controlling of Industrial Parameters Using GPRS." International Journal for Trends in Engineering and Technology 2015, vol 5, no. 2: 185-188.
  7. Patle, K. S., P. B. Dahikar, and K. Y. Rokde. "Design and Implementation of ARM Based Advanced Industrial Control and Data Acquisition with Wireless LAN Monitoring." Journal of Embedded Systems 2015, vol 3, no. 1: 16-20.
  8. Shaikh, S. A., and P. R. Gavhane. "ARM Based Security & Safety System for Base Transceiver Station." International Journal on Recent and Innovation Trends in Computing and Communication 2015, vol 3, no. 12: 6839-6842.
  9. Xilong, Qu, Liu Shengzong, Fu Sha, He Hong, Hu Ying, and Xiao Leyi. "Design and Implementation of Wireless Environment Monitoring System Based on STM32." Scientific programming 2021, no. 1: 6070664.
  10. Hong, He. "Design of Temperature and Humidity Controller of Agricultural Intelligent Tobacco House Based on STM32." INMATEH-Agricultural Engineering 2020, vol 62, no. 3: 39-48.