Open Access Open Access  Restricted Access Subscription Access
Open Access Open Access Open Access  Restricted Access Restricted Access Subscription Access

Web Based Irrigation System using Wireless Sensor Networks


Affiliations
1 Cognizant Technology Solution, Pune, Maharashtra, India
2 Electronics and Telecommunications Engineering Department, Sinhgad College of Engineering, Savitribai Phule Pune University, Pune, Maharashtra, India
     

   Subscribe/Renew Journal


India, being a developing nation, basically relies on farming. For farming water is essential factor. In other countries also the major profession of human Being is agriculture, out of available land 64% is engaged by the farming, and it needs nearly 85 % of clean water. This paper represents the irrigation system using the Linux board and wireless sensor network. Fundamentally, it includes two nodes which are named as Coordinator node which will be at receiver side and Sensor node which will be at transmitter side. Two parameters of the soil that is temperature of soil and moisture of soil are used for the decision to make either Irrigation turned on or off. In this proposed system, Raspberry Pi 3 is used as a coordinator node which collects the data collected by the sensors. RPi communicates with the sensor node uses ZigBee wireless protocol for communication. Web server will be designed at the Raspberry Pi through which user can control the level of water depending on the values of temperature and moisture remotely.

Keywords

Coordinator Node, Embedded Linux, Raspberry Pi, ZigBee.
User
Subscription Login to verify subscription
Notifications
Font Size

  • Pandurang H. Tarange “Web based Automatic Irrigation System using wireless sensor network and Embedded Linux board” 2015 International Conference on Circuit, Power and Computing Technologies [ICCPCT]
  • Gutierrez, J.; Villa-Medina, J.F.; Nieto-Garibay, A.; Porta-Gandara, M.A., "Automated Irrigation System Using a Wireless Sensor Network and GPRS Module," Instrumentation and Measurement, IEEE Transactions on , vol.63, no.1, pp.166,176, Jan. 2014.
  • Yunseop Kim; Evans, R.G.; Iversen, W.M., "Remote Sensing and Control of an Irrigation System Using a Distributed Wireless Sensor Network," Instrumentation and Measurement, IEEE Transactions on, vol.57, no.7, pp.1379, 1387, July 2008.
  • W. A. Jury and H. J. Vaux, “The emerging global water crisis: Managingscarcity and conflict between water users,” Adv. Agronomy, vol. 95, pp. 1–76, Sep. 2007.
  • Mirabella, O.; Brischetto, M., "A Hybrid Wired/Wireless Networking Infrastructure for Greenhouse Management," Instrumentation and Measurement, IEEE Transactions on, vol.60, no.2, pp.398, 407, Feb.
  • Wark, T.; Corke, P.; Sikka, P.; Klingbeil, L.; Ying Guo; Crossman, C.; Valencia, P.; Swain, D.; Bishop-Hurley, G., "Transforming Agriculture through Pervasive Wireless Sensor Networks," Pervasive Computing, IEEE , vol.6, no.2, pp.50,57, April-June 2007.
  • Rani, M.U.; Kamalesh, S., "Web based service to monitor automatic irrigation system for the agriculture field using sensors," Advances in Electrical Engineering (ICAEE), 2014 International Conference on , vol., no., pp.1,5, 9-11 Jan. 2014.
  • Genghuang Yang; Yuliang Liu; Li Zhao; Shigang Cui; Qingguo Meng; Chen HongDa, "Automatic irrigation system based on wireless network," Control and Automation (ICCA), 2010 8th IEEE International Conference on , vol., no., pp.2120,2125, 9-11 June 2010.
  • Zhang Feng, "Research on water-saving irrigation automatic control system based on internet of things," Electric Information and Control Engineering (ICEICE), 2011 International Conference on , vol., no., pp.2541,2544, 15-17 April 2011.
  • Yan Xijun; Lu Limei; Xu Lizhong, "The Application of Wireless Sensor Network in the Irrigation Area Automatic System," Networks Security, Wireless Communications and Trusted Computing, 2009. NSWCTC '09.International Conference on, vol.1, no., pp.21, 24, 25-26 April 2009.
  • R. B. Dhumale, N. D. Thombare, P. M. Bangare, Chetan Gawali, “Internet of Things for Smart City”, International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056 Volume: 04 Issue: 06 | June -2017 www.irjet.net p-ISSN: 2395-0072
  • Gaurav Kate, Kaustubh Dave, Saprem Kulkarni, R. B. Dhumale, “Android Application for S-Park System”, Int. J. Research in Engg. and Techn., vol.4, iss. 2, pp.636-641, Oct. 2015.
  • R. B. Dhumale, Gaurav Kate, Saprem Kulkarni, N. D. Thombare, “Reservation based S-Park System using Embedded Server and Android Application”, International Journal of Research in Engineering and Technology, vol. 5, iss. 8, pp. 115-119, Aug. 2016.

Abstract Views: 185

PDF Views: 1




  • Web Based Irrigation System using Wireless Sensor Networks

Abstract Views: 185  |  PDF Views: 1

Authors

Chetan Vinayak Gawali
Cognizant Technology Solution, Pune, Maharashtra, India
R. B. Dhumale
Electronics and Telecommunications Engineering Department, Sinhgad College of Engineering, Savitribai Phule Pune University, Pune, Maharashtra, India

Abstract


India, being a developing nation, basically relies on farming. For farming water is essential factor. In other countries also the major profession of human Being is agriculture, out of available land 64% is engaged by the farming, and it needs nearly 85 % of clean water. This paper represents the irrigation system using the Linux board and wireless sensor network. Fundamentally, it includes two nodes which are named as Coordinator node which will be at receiver side and Sensor node which will be at transmitter side. Two parameters of the soil that is temperature of soil and moisture of soil are used for the decision to make either Irrigation turned on or off. In this proposed system, Raspberry Pi 3 is used as a coordinator node which collects the data collected by the sensors. RPi communicates with the sensor node uses ZigBee wireless protocol for communication. Web server will be designed at the Raspberry Pi through which user can control the level of water depending on the values of temperature and moisture remotely.

Keywords


Coordinator Node, Embedded Linux, Raspberry Pi, ZigBee.

References