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Survey On Intelligent System for Vertical Farming Using Ubiquitous Computing
Subject area: Science,Engineering and Technology · Area of research: Agricultural Sector
Abstract
Over the years, traditional farming for harvesting with the use of soil takes longer time to decompose making it prone to diseases and expensive. Ubiquitous vertical system means growing plants without soil with better results, especially in areas with space and environment unsuitable. Commercial Ubiquitous vertical is the upcoming technology that grows plants through an inert media instead of natural soil. This system has no adverse effects on environment or quality on crops. Its main aim is to save water, improve quality of crops avoiding the adverse effects of pesticides and factors affecting quality of soil and save land.
Keywords
Ubiquitous Computing, Vertical farming, IoT, Arduino, sensors, ML algorithms.
References
[1] D. Despommier, “Vertical farming,” http://www.eoearth.org/view/article/156849.
[2] D. Despommier, “Farming up the city: the rise of urban vertical farms,” Trends in Biotechnology, vol. 31, no. 7, pp. 388–389, 2013.
[3] Rao and H. Zimmermann, “Preface to the focus theme selection ‘Pervasive Computing/ Ambient Intelligence’,” Electronic Markets, vol. 15, no. 1, p. 3.
[4] J. C. Augusto, V. Callaghan, A. Kameas, and I. Satoh, “Intelligent environments: a manifesto,” Human-Centric Computing and Information Sciences, vol. 3, p. 12, 2013.
[5] J. G. Pohl, “The evolution of intelligent computer software and the semantic web,” in Proceedings of the 16th International Conference on System Research, Informatics and Cybernetics, 2004.
[6] M.Weiser,The Computer for the 21st Century, Scientific American, 1991.
[7] R. Want, A. Hopper, V. Falcao, and J. Gibbons, “Active badge location system,” ACM Transactions on Information Systems, vol. 10, no. 1, pp. 91–102, 1992.
[8] G. D. Abowd, C. G. Atkeson, J. Hong, S. Long, R. Kooper, and M. Pinkerton, “Cyberguide: a mobile context-aware tour guide,” Wireless Networks, vol. 3, no. 5, pp. 421–433, 1997.
[9] Y. Sumi, T. Etani, S. Fels, N. Simonet, K. Kobayashi, and K. Mase, “C-map: building a contextaware mobile assistant for exhibition tours,” in Community Computing and Support Systems, Social Interaction in Networked Communities, pp. 137–154, Springer, London, UK, 1998, the book is based on the Kyoto Meeting on Social Interaction and Community aware, held in Kyoto, Japan, in June 1998.
[10] A. K. Cheverst, N. Davies, K. Mitchell, A. Friday, and C. Efstratiou,“Developing a context-aware electronic tourist guide: some issues and experiences,” in Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, pp. 17–24, ACMPress, NewYork, NY,USA, April 2000.
[11] A. K. Dey and G. D. Abowd, “Towards a better understanding of context and contextawareness,” in Proceedings of the Workshop on the What, Who, Where, When and How of Context-Awareness, ACM Press, New York, NY, USA.
[12] P. Prekop and M. Burnett, “Activities, context and ubiquitous computing,” Computer Communications, vol. 26, no. 11, pp.1168– 1176, 2003.
[13] K. Maraiya, K. Kant, and N. Gupta, “Application based study on wireless sensor networks,” International Journal of Computer Application, vol. 21, no. 8, 2011.
[14] Goyal and M. R. Tripathy, “Routing protocols in wireless sensor networks: a survey,” in Proceedings of the 2nd International Conference on Advanced Computing and Communication Technologies (ACCT ’12), pp. 474–480, January 2012.
[15] M. M. A. Azim, “MAP: a balances energy consumption routing protocol for wireless sensor networks,” Journal of Information Processing Systems, vol. 6, no. 3, pp. 295 306, 2010.
[16] M. Yoon, Y. K. Kim, and J. W. Chang, “An energy efficient routing protocol using message success rate in wireless sensor.
[17] X. Zhu and Y. Lin, “Zigbee implementation in intelligent agriculture based on internet of things,” Proceedings of the 2nd International Conference on Electronic & Mechanical Engineering and Information Technology (EMEIT ’12), 2012.
[18] Y. Cho, S. Park, J. Lee, and J. Moon, “An OWLbased context model for U-agricultural environments,” Lecture Notes in Computer Science, vol. 6785, no. 4, pp. 452– 461, 2011.
[19] J. Hwang, C. Shin, and H. Yoe, “Study on an agricultural environment monitoring server system using wireless sensor networks,” Sensors, vol. 10, no. 12, pp. 11189–11211, 2010
[20] M. Mizoguchi, T. Ito, and S. Mitsuishi, “Ubiquitous monitoring of agricultural fields in Asia using wireless sensor network,” in Proceedings of the 19th World Congress of Soil Science, August 2010.
[21] J. Hwang and H. Yoe, “Study on the contextaware middleware for ubiquitous greenhouses using wireless sensor networks,” Sensors, vol. 11, no. 5, page:12
How to cite this paper
@article{1703659,
author = {Swetha K. B, Pooja J, Vachana Deepthi M, Harshitha J, Morium Sultana Majumdar},
title = {Survey On Intelligent System for Vertical Farming Using Ubiquitous Computing},
journal = {Iconic Research And Engineering Journals},
year = {2022},
volume = {6},
number = {1},
pages = {351-355},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1703659.pdf},
abstract = {Over the years, traditional farming for harvesting with the use of soil takes longer time to decompose making it prone to diseases and expensive. Ubiquitous vertical system means growing plants without soil with better results, especially in areas with space and environment unsuitable. Commercial Ubiquitous vertical is the upcoming technology that grows plants through an inert media instead of natural soil. This system has no adverse effects on environment or quality on crops. Its main aim is to save water, improve quality of crops avoiding the adverse effects of pesticides and factors affecting quality of soil and save land.},
keywords = {Ubiquitous Computing, Vertical farming, IoT, Arduino, sensors, ML algorithms.},
month = {July},
}