Research and Design of Intelligent Agricultural Management System Based on Zigbee

Article Preview

Abstract:

Data transmission on sensor nodes is realized through data fusion processing, as well as software and hardware design of sensor node. Feedback process is performed on agricultural environment as it transfers to the terminal device finally. This paper has designed a kind of data fusion hue which could immediately perform pixel-level fusion processing after sensor nodes obtain information, and put forward that the data fusion algorithm (KDF) based on Kalman filtering could be applied for data fusion processing of system. Mesh network is constructed on the basis of hardware by sensor nodes based on ZigBee wireless communication protocol .Thus this overall set of intelligent monitoring and processing center which integrates user management, data analysis, and information issuing into an organic whole is designed.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1372-1376

Citation:

Online since:

September 2014

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] L.Y. Zhang, F. Xue et al. The application of ZigBee technology in agriculture. Guangdong Agricultural Sciences, vol. 38(16), pp.146-149, 2011. (in Chinese).

Google Scholar

[2] S. H. Li, C. H. Xiao et al. Design for intelligent agricultural system based on ZigBee technology. Science and Technology Square, vol. 7, pp.73-75, 2011. (in Chinese).

Google Scholar

[3] R. W. Zhao. Design of intelligent application in agriculture based on ZigBee technology. Electronic Production, vol. 14, 140, 2013. (in Chinese).

Google Scholar

[4] Y. X,Z.H. You et al. Realizing vehicle-mounted sensors network platform based on CAN trunk and GPRS. Sensor and Microsystem, Vol. 27(3), pp.83-85, 2008. (in Chinese).

Google Scholar

[5] F.B. Wang, L. Shi, F.Y. Ren et al. Self positioning systems and algorithms in wireless sensor network. Journal of Software, vol. 16(5), 2005. (in Chinese).

Google Scholar

[6] C. Hua, B. Jiang, H. Wang et al. Design and implementation of online agricultural environment monitoring system accessible to internet. Jiangsu Agricultural Sciences, (4), 2004. (in Chinese).

Google Scholar

[7] P. Yu. Design for infusion monitoring system based on wireless sensor network. Heilongjiang University, 2012. (in Chinese).

Google Scholar

[8] S.L. Han, J.X. Tang, H. Ma et al. Design and implementation of PLC remote monitoring and fault diagnosis system. Industrial instrumentation & automation equipment, (1), PP. 23-26, 2005. (in Chinese).

Google Scholar

[9] Z.G. Xiong. Research and application of wireless sensor network's localization algorithm based on RSSI. Chongqing University, 2010. (in Chinese).

Google Scholar

[10] H.F. Han, K.M. Du, Z.F. Sun et al. Design and application for remote monitoring system of greenhouse environment based on ZigBee network. The Chinese society of Agricultural Engineering, (7), pp.158-163, 2009. (in Chinese).

Google Scholar