Research of IOT in the Application of Wisdom Agricultural

Article Preview

Abstract:

As IOT technology attracted widespread attention of the whole society in recent years,communication network, intelligence chip and embedded system has become the hot spot research in the application of agriculture. This paper introduces the concept of IOT technology, expounds the IOT's three-layer structure: Perception layer, Network layer and Application layer; Meanwhile, a detail description of wisdom agriculture is also made, and the IOT's application in agriculture along with chart patterns is analyzed; Finally, the paper illustrates Internet application example and the prospects of application of IOT's technology in agriculture as well as the role in promoting scientific and technological progress and industrial development.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

714-718

Citation:

Online since:

February 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Ampatzid is Y.G., Vouqioukas S.G. Field experiments for evaluating the incorporation of RFID and barcode registration and digital weighing technologies in manual fruit harvesting[J]. Computers and Electronics in Agriculture, 2009, 66(2): 166-172.

DOI: 10.1016/j.compag.2009.01.008

Google Scholar

[2] Bowm an K.D. Longevity of Radio frequency Identification Device Microchips in CitrusTrees[ J]. Hortscienc; 2010, 45(3): 451-452.

Google Scholar

[3] Zhixiang Gan. The origin and development of Internet of Things[J]. Modern Economic Information, 2010, (1): 158-157.

Google Scholar

[4] Liping Gu. Application and development of the preferred Internet of Things [J]. China Radio , 2010, (3): 25-28.

Google Scholar

[5] SHEN Subin, FAN QuIi, ZONO Ping. Study on the Architecture and Associated Technologies for Internet of Things[J]. Journal of Nanjing University of Posts and Telecommunications(Natural Science), 2009, 29(6): 1-11.

Google Scholar

[6] Yawei Wang. Review of the Development of Internet of Things[J]. Science& Technology Information , 2010, (3): 37, 7.

Google Scholar

[7] Jing Lin, SEDIGH Sahra, MILLER Ann. A general framework for quantitative modeling of dependability in Cyber-Physical Systems: a proposal for doctoral research[C]/Proc of 33rd Annual IEEE International Computer Software and Application Conference. 2009: 668-671.

DOI: 10.1109/compsac.2009.103

Google Scholar

[8] FREDERIXI. Internet of Things and radio frequency identification in care taking, facts and privacy challenges[C]/Proc of 1st International Conference on Wireless Communication, Vehicular Technology, Information Theory and Aerospace&Electronic Systems Technology. 2009: 319-323.

DOI: 10.1109/wirelessvitae.2009.5172467

Google Scholar

[9] Baoyun Wang. Review on Internet of things [J]. Journal of Electronic Measurement and Instrument, 2009, 23(12): 1-7.

Google Scholar

[10] Wenqing Li, Zongliang Guo. The growth and development of the Internet of things[J]. Network&Information, 2010, 24(2): 27.

Google Scholar

[11] Zhongying Zhu. Progress and Trends of Sensor Network and Internet of Things[J]. Microcomputer Applications, 2010, 26(1).

Google Scholar

[12] Bo Yan, Guangwen Huang. Supply chain information transmission based on RFID and Internet of things[C]/ISECS International Colloquium on Computing, Communacation Control and Management. 2009, 4: 166-169.

DOI: 10.1109/cccm.2009.5267755

Google Scholar

[13] LEEE A. Cyber Physical Systems: design challenges[C]/11th IEEE Symposium on Object Oriented Real-Time Distributed Computing(ISORC). 2008: 363-369.

DOI: 10.1109/isorc.2008.25

Google Scholar

[14] Long He, Zhenxia Wen, Haiqing Yang, et al. Application of wireless sensor networks in facility agriculture[J]. Journal of Agricultural Mechanization Research, 2010 (12): 236-239.

Google Scholar