The Research and Prospect for Hardware System of Intelligent Control of Greenhouse Environment

Article Preview

Abstract:

The reliable hardware system is the guarantee of intelligent control to greenhouse environment. This paper made a simple description of greenhouse environment factors and their control equipments which directly affected system control, and summarized the hardware structure, characteristics, and application scope of some typical control systems in the greenhouse environment control. Prospect was also proposed for a further development of the hardware system according to the characteristics of the remote monitoring of greenhouse environment control system: it put forward a kind of system structure that achieved comprehensive remote monitoring of greenhouse environment using 3G network technology.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 945-949)

Pages:

2623-2628

Citation:

Online since:

June 2014

Export:

Price:

* - Corresponding Author

[2] B.H.E. Vanthoor, C. Stanghellini, E.J. Van Henten and P.H.B. De Visser: Biosystems Engineering, Vol. 110 (2011) No. 4, pp.363-377.

DOI: 10.1016/j.biosystemseng.2011.06.001

Google Scholar

[3] H.G. Hu, L.H. Xu, B.K. Zhu and R.H. Wei: Sensors, Vol. 11 (2011) No. 3, pp.3281-3302.

Google Scholar

[4] J.C. Ma, L. Li, X. Liu, Z.T. Fu and L.X. Zhang: Sensor Letters, Vol. 11 (2013) No. 6-7, pp.1396-1402.

Google Scholar

[5] R. Gonzalez, A. Pawlowski, C. Rodriguez, J.L. Guzman and J. Sanchez-Hermosilla: Spanish Journal of Agricultural Research, Vol. 10 (2012) No. 4, pp.939-949.

Google Scholar

[6] C. j. Zhou: Modern greenhouse engineering (Chemical Industry Press, China 2010). (In Chinese).

Google Scholar

[7] L.X. Zhu and J.J. Lin: Facility agriculture control technology and equipment (China Agriculture Press, China 2012). (In Chinese).

Google Scholar

[8] J.H. Li: Journal of Agricultural Mechanization Research, Vol. 35 (2013) No. 10, pp.174-177. (In Chinese).

Google Scholar

[9] C.F. Duan: Journal of Agricultural Mechanization Research, Vol. 33 (2011) No. 7, pp.144-146. (In Chinese).

Google Scholar

P.A. Saudagar, D.S. Dhote and D.R. Solanke: International Journal Of Engineering And Science, Vol. 1 (2012) No. 11, pp.40-44.

Google Scholar

[1] X.L. Guo, G.M. Zeng, X.L. Wu and S.G. Cui: Journal of Tianjin University of Science & Technology, Vol. 27 (2012) No. 5, pp.65-68.

Google Scholar

[2] Y.M. Du, L.N. Gai and B.B. Yan: Journal of Agricultural Mechanization Research, Vol. 34 (2012) No. 12, pp.88-91. (In Chinese).

Google Scholar

[3] H.S. Fu and Z.J. Zhao: Journal of Agricultural Mechanization Research, Vol. 35 (2013) No. 12, pp.185-188. (In Chinese).

Google Scholar

[4] R. Cheng, Z.Q. Wu, D. Xu and X.H. Cai: Journal of Agricultural Mechanization Research, Vol. 33 (2011) No. 2, pp.167-169. (In Chinese).

Google Scholar

[5] J. Yang, B.L. Bai and Z.T. Li: Journal of Agricultural Mechanization Research, Vol. 35 (2013) No. 10, pp.166-170. (In Chinese).

Google Scholar

[6] H. Han: Instrument Technique and Sensor, (2012) No. 3, pp.60-61. (In Chinese).

Google Scholar

[7] J. Yang, Y. lin and H.D. li: Journal of Agricultural Mechanization Research, Vol. 34 (2012) No. 6, P. 157-160. (In Chinese).

Google Scholar

[8] l. h. Zhang, L. Sun, C.F. Lun and Q.Z. Wang: Journal of Agricultural Mechanization Research, Vol. 33 (2011) No. 6, pp.168-170. (In Chinese).

Google Scholar

[9] F. Jiang and W. Zhao: Journal of Agricultural Mechanization Research, Vol. 35 (2013) No. 9, pp.218-222. (In Chinese).

Google Scholar

[20] W.T. Sung and C.C. Hsu: Sensor Review, Vol. 33 (2013) No. 3, pp.246-256.

Google Scholar

[21] M.T. Yang, C.C. Chen and Y.L. Kuo: Energy and Buildings, Vol. 60 (2013) No. 3, pp.364-371.

Google Scholar

[22] D.H. Park, B.J. Kang, K.R. Cho, C.S. Shin, S.E. Cho, J.W. Park and W.M. Yang: Wireless Personal Communications, Vol. 56 (2011) No. 1, pp.117-130.

Google Scholar