INDUSTRIAL ENVIRONMENT MONITORING SYSTEM USING AVR328

April 2018
Vol-4, Issue-2
Paper ID: 8166
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
Electronics and Telecommunication Engineering
Keywords
ATMEGA 16 WSN Gases Sensor Air pollution IoT (Internet of Things) LCD display Wi-Fi Module.
Abstract
Air pollution is increased day by day due to various factors. The level of pollution has increased due to industrialization and urbanization which results in harmful effects on human health. So as to observer quality of air, a Wi-Fi based module is designed & implemented using Internet of Things simply called as IoT. This system is design on a device to IoT for monitoring air pollution, once the sensor has read the particular pressure in industry. In order to monitor, system has implemented in a WSN (Wireless Sensor Network) based on new framework which is based on the data acquisition and transmission. Different type of sensors are used such as CO, CO2. A system is used through which the level of sound and the existence of the harmful gases in the surroundings area can be detected. A text message is sent to the base station through Wi-Fi module which shows the content of CO, CO2 gases as well as temperature present in surrounding. This system designed on device to cloud architecture in IoT for monitoring air pollution precisely. Once the sensor node reads individual pollutants composition and location coordinates, Air quality index (AQI) will be calculated using linear segmented principle with greater Vancouver AQI table and Max operator aggregation method. Based on AQI value, corresponding LED will be actuated for indication and health impact with precaution steps messages will be displayed on the screen. All those data will be pushed to cloud storage an open source application programming interface for loT based devices. These pushed data along with date and time can be retrieved as a separate excel sheet for future analysis.

Author Information

# Name Institute / Affiliation
1 Tanmay Nandanwar Priyadarshini J.L. College of Engineering
2 Swati Bhagat Priyadarshini J.L. College of Engineering
3 Sanchi Dhabarde Priyadarshini J.L. College of Engineering
4 Tushar Tumdam Priyadarshini J.L. College of Engineering
5 Prof. Nisha K. Warambhe Priyadarshini J.L. College of Engineering

How to Cite

Use the following formats to cite this article in your research.

APA Style
Nandanwar, Tanmay, Bhagat, Swati, Dhabarde, Sanchi, Tumdam, Tushar, & Warambhe, Prof. Nisha K. (2018). INDUSTRIAL ENVIRONMENT MONITORING SYSTEM USING AVR328. International Journal of Advance Research and Innovative Ideas In Education, 4(2), 3858-3862.
MLA Style
Nandanwar, Tanmay, et al. "INDUSTRIAL ENVIRONMENT MONITORING SYSTEM USING AVR328." International Journal of Advance Research and Innovative Ideas In Education, vol. 4, no. 2, 2018, pp. 3858-3862.
IEEE Style
Tanmay Nandanwar, Swati Bhagat, Sanchi Dhabarde, Tushar Tumdam, and Prof. Nisha K. Warambhe, "INDUSTRIAL ENVIRONMENT MONITORING SYSTEM USING AVR328," International Journal of Advance Research and Innovative Ideas In Education, vol. 4, no. 2, pp. 3858-3862, 2018.
Vancouver Style
Nandanwar Tanmay, Bhagat Swati, Dhabarde Sanchi, Tumdam Tushar, Warambhe Prof. Nisha K.. INDUSTRIAL ENVIRONMENT MONITORING SYSTEM USING AVR328. International Journal of Advance Research and Innovative Ideas In Education. 2018;4(2):3858-3862.
Harvard Style
Nandanwar, Tanmay, Bhagat, Swati, Dhabarde, Sanchi, Tumdam, Tushar, & Warambhe, Prof. Nisha K. (2018) 'INDUSTRIAL ENVIRONMENT MONITORING SYSTEM USING AVR328', International Journal of Advance Research and Innovative Ideas In Education, 4(2), pp. 3858-3862.
Chicago Style
Nandanwar, Tanmay, et al. "INDUSTRIAL ENVIRONMENT MONITORING SYSTEM USING AVR328." International Journal of Advance Research and Innovative Ideas In Education 4, no. 2 (2018): 3858-3862.
Turabian Style
Nandanwar, Tanmay, et al. "INDUSTRIAL ENVIRONMENT MONITORING SYSTEM USING AVR328." International Journal of Advance Research and Innovative Ideas In Education 4, no. 2 (2018): 3858-3862.

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