Open Access   Article Go Back

Agile Agricultural System Using Wireless Fidelity

Neha Dayaram Amrutkar1 , S. S. Morad2

Section:Research Paper, Product Type: Journal Paper
Volume-6 , Issue-7 , Page no. 161-167, Jul-2018

CrossRef-DOI:   https://doi.org/10.26438/ijcse/v6i7.161167

Online published on Jul 31, 2018

Copyright © Neha Dayaram Amrutkar, S. S. Morad . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

View this paper at   Google Scholar | DPI Digital Library

How to Cite this Paper

  • IEEE Citation
  • MLA Citation
  • APA Citation
  • BibTex Citation
  • RIS Citation

IEEE Style Citation: Neha Dayaram Amrutkar, S. S. Morad, “Agile Agricultural System Using Wireless Fidelity,” International Journal of Computer Sciences and Engineering, Vol.6, Issue.7, pp.161-167, 2018.

MLA Style Citation: Neha Dayaram Amrutkar, S. S. Morad "Agile Agricultural System Using Wireless Fidelity." International Journal of Computer Sciences and Engineering 6.7 (2018): 161-167.

APA Style Citation: Neha Dayaram Amrutkar, S. S. Morad, (2018). Agile Agricultural System Using Wireless Fidelity. International Journal of Computer Sciences and Engineering, 6(7), 161-167.

BibTex Style Citation:
@article{Amrutkar_2018,
author = {Neha Dayaram Amrutkar, S. S. Morad},
title = {Agile Agricultural System Using Wireless Fidelity},
journal = {International Journal of Computer Sciences and Engineering},
issue_date = {7 2018},
volume = {6},
Issue = {7},
month = {7},
year = {2018},
issn = {2347-2693},
pages = {161-167},
url = {https://www.ijcseonline.org/full_paper_view.php?paper_id=2411},
doi = {https://doi.org/10.26438/ijcse/v6i7.161167}
publisher = {IJCSE, Indore, INDIA},
}

RIS Style Citation:
TY - JOUR
DO = {https://doi.org/10.26438/ijcse/v6i7.161167}
UR - https://www.ijcseonline.org/full_paper_view.php?paper_id=2411
TI - Agile Agricultural System Using Wireless Fidelity
T2 - International Journal of Computer Sciences and Engineering
AU - Neha Dayaram Amrutkar, S. S. Morad
PY - 2018
DA - 2018/07/31
PB - IJCSE, Indore, INDIA
SP - 161-167
IS - 7
VL - 6
SN - 2347-2693
ER -

VIEWS PDF XML
486 310 downloads 295 downloads
  
  
           

Abstract

the Internet of Things has the potential has to transform the globe we live in; more-competent industries, automatic cars, and revolution of cities all these application are design using internet of things. However, the application of technology like Internet of things in agriculture has the greatest impact. There are seventy percent of people depends on the farming in India and one third people depend on other work. Facing the problem in agriculture often cause hindrance in the development of the country. Solution of this problem can be solve by using recent technologies. In this system, it is proposed to develop a Smart Farming System possess the benefits of cutting edge technologies such as internet of things and Wireless Sensor Network to help farmers for improving their farm. Using sensors like temperature, humidity, moisture, pH level sensor, wind speed sensor one can get the information about the parameters of the farm and then received data is transferred via raspberry pi to the server. Then the data received on the server, can be accessed by user to take necessary action. Also, an android application is installed in user’s mobile phone provides which an additional advantage of accessing data from any location.

Key-Words / Index Term

Agriculture, Internet of Things, Wireless Sensor Network, Wireless-Fidelity, Environment

References

[1] Jin-Shyan Lee, Yu-Wei Su, and Chung-Chou Shen “A Comparative Study of Wireless Protocols: Bluetooth, UWB, ZigBee, and Wi-Fi”, The 33rd Annual Conference of the IEEE Industrial Electronics Society (IECON) Nov. 5-8, 2007.
[2] Jeonghwan Hwang, Changsun Shin and Hyun Yoe “ Study on an Agricultural environment Monitoring Server System using Wireless Sensor Networks” ISSN 1424-8220 www.mdpi.com/journal/sensors, 2010.
[3] Hui Changl, Nan Zhou1, Xiaoguang Zhaol,” A New Agriculture Monitoring System Based on WSNs” Journal of Anhui Agricultural Sciences, vol. 38, pp. 4370-4372, 2010.
[4] Nattapol Kaewmard, Saiyan Saiyod” Sensor Data Collection and Irrigation Control on vegetable Crop Using Smart Phone and Wireless Sensor Networks for Smart Farm” 2014 IEEE Conference on Wireless Sensors (ICWiSE), October, 26-28 2014.
[5] Marcello A. Gómez Maureira, Daan Oldenhof, “ThingSpeak – an API and Web Servicefor the Internet of Things”, https://thingspeak.com/channels/2567. 2014-06-08.
[6] M.K.Gayatri, J.Jayasakthi, Dr.G.S.Anandha Mala, “ Providing Smart Agricultural Solutions to Farmers for better yielding using IoT”, IEEE International Conference on Technological Innovations in ICT for Agriculture and Rural Development, vol 45, 2015.
[7] Soundhar Ganesh,Venkatash,Vidhyasagar,Maragatharaj, “Raspberry Pi Based Interactive Home Automation System through Internet of Things”, International Journal for Research in Applied Science & Engineering Technology (IJRASET), Volume 3 Issue III, March 2015.
[8] S. Shanthi, Abinaya. R, Akshaya. V, Gowri. S “ Agriculture Crop Monitoring using GSM in WSN” International Journal of Advanced Research in Computer and Communication Engineering Vol. 5, Issue 3, March 2016.
[9] Abdullah Na, William Isaac, “Developing a Human-Centric Agricultural Model in the IoT Environment”, International Conference on Internet of Things and Applications (IOTA) Maharashtra Institute of Technology, Pune, India 22 Jan - 24 Jan, 2016.
[10] Arindam Giri, Subrata Dutta, Sarmistha Neogy, “Enabling Agricultural Automation to Optimize Utilization of Water, Fertilizer and Insecticides by implementing Internet of Things (IoT)”, International conference on information technology,2016.
[11] The Internet of Things, http://www.gartner.com/it-glossary/internet-of-things, on February 20, 2016.
[12] IOT Devices, http://blog.atollic.com/one-trillion-iot-evices-expected-by-2025-what-development-tools-to-use-for-development-of-internet-connected-iot-products, on February 18, 2016.
[13] Research papers on IOT, http://www.engpaper.net/free-research-papers-iot-internet-of-thing.htm, on February 20, 2016.
[14] The official RaspberryPi website, www.raspberrypi.org, on January 31, 2016.
[15] James Brown and Utz Roedig, Carlo Alberto Boano and Kay Romer, Nicolas Tsiftes, “Demo Abstract: How Temperature Affects IoT Communication”, February 19, 2016.