Design Virtual Instrumentation System of a Cigarette Smoke Detector

Authors

  • Sabar Departement of Instrumentation and Automation Engineering, Institut Teknologi Sumatera, Lampung Selatan
  • Joni Departement of Instrumentation and Automation Engineering, Institut Teknologi Sumatera, Lampung Selatan
  • Kisna Pertiwi Departement of Instrumentation and Automation Engineering, Institut Teknologi Sumatera, Lampung Selatan
  • Ratih Rundri Utami Departement of Physics, Indonesia University, Depok
  • Sastra Kusuma Wijaya Departement of Physics, Indonesia University, Depok

DOI:

https://doi.org/10.55927/fjsr.v2i3.3502

Keywords:

Pollution, MQ-2 Gas Sensor, Smoke Detector, Microcontroller

Abstract

The contributor to air pollution today is cigarette smoke because almost every public facility is provided with a special room for smokers and a non-smoking room. However, the level of awareness of active smokers is not only harmful to themselves but also to secondhand smoke, especially in smoke-free environments. Along with the development of technology, we can take advantage of the development of a cigarette smoke detector based on the Arduino with the MQ-2 gas sensor. Therefore, this tool will make it easier to monitor a crowded room for cigarette smoke. The system uses the MQ-2 gas sensor to detect cigarette smoke in a room. By using a buzzer alarm as a sign that there is cigarette smoke inside a room. The ppm value obtained from the sensor is 550 ppm on the cigarette sensor to detect cigarette smoke

Downloads

Download data is not yet available.

References

Chen, S. J., Hovde, D. C., Peterson, K. A., & Marshall, A. W. (2007). Fire detection using smoke and gas sensors. Fire Safety Journal, 42(8), 507–515. https://doi.org/10.1016/j.firesaf.2007.01.006

Gharge, S., Birla, S., Pandey, S., Dargad, R., & Pandita, R. (2014). Smoke and Fire Detection. 4(7), 1–5.

Hanwei Electronics. (2018). TECHNICAL DATA SHEET MQ-2 GAS SENSOR (Vol. 1, pp. 3–5). HANWEI ELETRONICS CO.,LTD. http://www.hwsensor.com

Hariyanto, D. (2019). Studi Intensitas Radiasi Menggunakan Survey Meter Berbasis Tabung Geiger M4011 dan Mikrokontroler Arduino Uno. Prosiding SNIPS, June 2020.

Sabar, Hariyanto, D., Pertiwi, K., Mufidah, Z., Setiawan, R., Naimah, K., & Madi. (2021). Pengujian Kadar Zat Terlarut Memanfaatkan Sistem Instrumentasi Maya untuk Penentuan Kualitas Air Bersih. Journal of Science and Applicative Technology (JSAT), 01(Juli), 1–6.https://doi.org/10.35472/jsat.v5i2.412

Sabar, Saputro, A. H., & Imawan, C. (2019a). Moisture Content Prediction System of Dried Sea Cucumber (Beche-de-mer) Based on Visual Near-Infrared Imaging. Proceedings of the 2019 6th International Conference on Instrumentation, Control, and Automation, ICA 2019, August, 167–171. https://doi.org/10.1109/ICA.2019.8916705

Sabar, Saputro, A. H., & Imawan, C. (2019b). Salt Content Prediction System of Dried Sea Cucumber (Beche-de-mer) Based on Visual Near-Infrared Imaging. 2019 4th Asia-Pacific Conference on Intelligent Robot Systems, ACIRS 2019, 245–249.https://doi.org/10.1109/ACIRS.2019.8935953

Sabar, Wijaya, S. K., & Anjani, D. M. N. (2021). Water Level Detection System using Virtual Instrumentation for Monitoring Flood. Al-Fiziya: Journal of Material Sciences, Geophysics, Instrumentation, and Theoritical Physics, 4(I), 29–35. https://doi.org/10.12408

Seeed. Growthe difference. (2015). Grove - Gas Sensor ( MQ2 ) User Manual. Seed Grow the Difference, 1(september), 16.

To, H., & Fong, N. (2013). Investigation of the performance and improvement of optical smoke detectors. Procedia Engineering, 62, 985–993. https://doi.org/10.1016/j.proeng.2013.08.152

Downloads

Published

2023-03-30

How to Cite

Sabar, Joni, Kisna Pertiwi, Ratih Rundri Utami, & Sastra Kusuma Wijaya. (2023). Design Virtual Instrumentation System of a Cigarette Smoke Detector . Formosa Journal of Sustainable Research, 2(3), 555–564. https://doi.org/10.55927/fjsr.v2i3.3502

Issue

Section

Articles