DOI QR코드

DOI QR Code

Design and Development of Sprinkler Control System Utilizing Mobile with IoT

  • Kang, Tae-Sun (Department of Landscape Architecture, Honam University) ;
  • Lee, Sang-Hyun (Department of Computer Engineering, Honam University)
  • Received : 2020.10.07
  • Accepted : 2020.10.17
  • Published : 2020.11.30

Abstract

We studied on the design of a sprinkler control system that communicates with the administrator's mobile through a wireless communication network and a sprinkler unit that sprays water on the vegetation area. This sprinkler control system consists of a communication module that receives an operation signal for the operation of the sprinkler unit from the administrator's mobile, and a control module that controls the sprinkler unit according to the operation signal received through the communication module. It is also designed to control sprinkler units by measuring temperature, humidity, light intensities, vibration and field images in the vegetation area in real time through sensors and camera for each of them and comparing them with established limit criteria. The sprinkler allows the administrator to control the sprinkler more easily because the administrator operates the sprinkler through the mobile from a distance, and emergency situations occur and can respond quickly.

Keywords

References

  1. NRCS, "New Jersey Irrigation Guide. Chapter 6", United States Department of Agriculture, Natural Resources Conservation Service, Somerset, NJ. pp. NJ6-1, 2005.
  2. D. L. Martin, D. C. Kincaid, and W. M. Lyle, "Design and Operation of Sprinkler Systems", Design and Operation of Farm Irrigation Systems; Hoffman, G.J., Ed.; American Society of Agricultural and Biological Engineers: St. Joseph, MI, USA, pp. 557-631, 2007.
  3. B. S. Chowdhury and N. Raghukiran, "Autonomous Sprinkler System with Internet of Things", International Journal of Applied Engineering Research, vol. 12, no. 16, pp. 5430-5432, 2017.
  4. C. Kamienski, J. P. Soininen, M. Taumberger, R. Dantas, A. Toscano, T. S. Cinotti, R. F. Maia, and A. T. Neto, "Smart Water Management Platform: IoT-Based Precision Irrigation for Agriculture", Sensors (Basel), vol. 19, no. 2, 2019. DOI: https://doi.org/10.3390/s19020276
  5. F. Nilsson and A, "Communications, Intelligent Network Video: Understanding Modern Video Surveillance Systems," Taylor & Francis, January, 2008.
  6. Y. H. Ko, G. S. Heo, and S. H. Lee, "A Study on Distributed System Construction and Numerical Calculation Using Raspberry Pi", International Journal of Advanced Smart Convergence (IJASC), vol. 8, no. 4, pp. 194-199, 2019. DOI: https://doi.org/10.7236/IJASC.2019.8.4.194
  7. L. Garcia, L. Parra, J. M. Jimenez, J. Lloret, P. Lorenz, "IoT-Based Smart Irrigation Systems: An Overview on the Recent Trends on Sensors and IoT Systems for Irrigation in Precision Agriculture", Sensors (Basel), vol. 20, no. 4, 2020. DOI: https://doi.org/10.3390/s20041042
  8. G. Jeon, D. W. Jeong, and S. H. Lee, "Development of Wearable Device for Hearing Impaired people Using Arduino", International Journal of Advanced Smart Convergence (IJASC), vol. 8, no. 4, pp. 214-220, 2019. DOI: http://dx.doi.org/10.7236/IJASC.2019.8.4.214
  9. B. Vogel, Y. Dong, B. Emruli, P. Davidsson, and R. Spalazzese, "What Is an Open IoT Platform? Insights from a Systematic Mapping Study", Future Internet, vol. 12, no. 4, 2020. DOI: https://doi.org/10.3390/fi12040073