Development of GSM Based Electronic Security System for Industrial Applications

Authors

  • G. B. Bhagat  Department of Electronics, Karmaveer Bhaurao Patil Mahavidyalaya, Pandharpur, MS, India,
  • K. K. Gawade  Department of Mathematics, V.G.Vaze Arts, Commerce and Science College (Autonomous) Mithgar Road, Mulund East, Maharashtra, India
  • N. N. Kumbhar  Department of Electronics, Mudhoji College, Phaltan, Maharashtra, India
  • S. K. Tilekar  Department of Electronics, Shankarrao Mohite Mahavidyalaya, Akluj, , Maharashtra, India
  • P. V. Mane-Deshmukh  Department of Electronics, Jayawantrao Sawant College of Commerce and Science, Pune, Maharashtra, India

Keywords:

Smoke and LPG detector, Arduino, GSM Module, Buzzer, Embedded System.

Abstract

During early days, in industrial sector the monitoring and controlling of various parameters for security purpose depicts human interface. Hence, the measurements as well as controlling process become less reliable. Now a day, with the help of atomization process the limitations are minimized. To ensure more security for industrial sector, the development of electronic security system is very important. Therefore, an embedded system is designed for security purpose in industrial sector based on GSM by deploying Arduino microcontroller. The sensors MQ-135, MQ-6 and PIR sensor are interfaced with Arduino to detect smoke, LPG leakage and unexpected motion in the industrial environment respectively. The smoke, LPG and motion dependent signals are applied as input to Arduino Microcontroller. The detection of input signal is ensured by interfacing the buzzer to the microcontroller. The GSM module is also wired about the Arduino for mobile communication. The firmware is developed in embedded C using Arduino IDE. The system is designed and tested successfully. The results regarding implementation of the system are interpreted in this paper.

References

  1. P. V. Mane-Deshmukh, Dr. B. P. Ladgaonkar, S. C. Pathan, S. S. Shaikh, “Microcontroller PIC 18f4550 Based Wireless Sensor Node to Monitor Industrial Environmental Parameters”, International Journal of Advanced Research in Computer Science and Software Engineering, 3 10 (2013) 943-950.
  2. S. S. Shaikh, S. C. Pathan, P. V. Mane-Deshmukh, S. K. Tilekar and B. P. Ladgaonkar, “Development of Smart Fusion Technology Based Customizable System-on-Chip For Monitoring of Polyhouse Parameters”, International Journal of Scientific and Engineering Research, 5 9 (2014) 100-108
  3. J. Lozano, J. Suarez, P. Arroyo, J. Ordiales and F. Alvarez, “Wireless Sensor Network For Indoor Air Quality Monitoring”, Chemical Engineering Transaction, 30 (2012), 319-324.
  4. P. V. Mane-Deshmukh, D M Adat, S. K. Tilekar, Dr. B. P. Ladgaonkar, “Monitoring and Control of Gas Leakages of Industrial Sector Using PIC 18f4550, Zigbee and Wireless Sensor Actuator Network”, i-manager’s Journal on Electronics Engineering, 8 3 ( 2018), 5-13.
  5. User Manual of MQ135 smoke sensor
  6. Datasheet of MQ6 LPG sensor
  7. A. A. Galadima, “Arduino as a learning tool,” in 2014 11th International Conference on Electronics, Computer and Computation (ICECCO), Sep. 2014, pp. 1–4.
  8. J. S. Kiurski, I. B. Oros, V. S. Kecic, I. M. Kovacevic and S. M. Aksentijevic, “The temporal variation of indoor pollutants in photocopying shop”, Stochastic Environmental Research and Risk Assessment, vol. 30, no. 4, pp. 1289-1300, 2016;
  9. https://www.arduino.cc/en/software
  10. Mane-Deshmukh, P. V., Adat, D. M., Ladgaonkar, B. P., & Tilekar, S. K. (2018a). Designing of an embedded system for Wireless Sensor Network for hazardous gas leakage control for industrial Application, i-manager's Journal on Embedded Systems, 6(2), 1-9.

Downloads

Published

2021-12-30

Issue

Section

Research Articles

How to Cite

[1]
G. B. Bhagat, K. K. Gawade, N. N. Kumbhar, S. K. Tilekar, P. V. Mane-Deshmukh "Development of GSM Based Electronic Security System for Industrial Applications " International Journal of Scientific Research in Science, Engineering and Technology (IJSRSET), Print ISSN : 2395-1990, Online ISSN : 2394-4099, Volume 8, Issue 6, pp.294-299, November-December-2021.