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Design of Water-saving Irrigation Monitoring System Based on CC2430 and Fuzzy-PID

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Abstract (2. Language): 
In order to solve the problems existing in the traditional water-saving irrigation monitoring such as smaller monitoring area and lower sampling rate, a water-saving irrigation control system based on CC2430 and fuzzy PID control strategy is designed and developed. The system consists of eight sensor nodes, a gateway node and a monitoring center, and uses CC2430 as the core to develop wireless sensor nodes which follow the ZigBee communication protocol, it uses ZigBee technology to achieve networking of wireless sensors and the automatic aggregation of monitoring data, and uses the fuzzy PID control algorithm to achieve the regulation of irrigation water so as to improve the control precision. The functions, such as management of various sensor nodes, management of a large number of environmental data and early warning are achieved based on embedded database. The test results have showed that this system has several advantages such as high reliability in data transmission, stability, adaptability, good openness, economy, and short development cycle, which is suitable for real-time monitoring of agricultural water-saving irrigation.
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REFERENCES

References: 

[1] Jackson T, Mansfield K, Saafi M, etal. Measuring soil temperature and
moisture using wireless MEMS sensors[J]. Journal of Measurement,
2007,41(4):381-390.
[2] Raul Morais, Valente A, Ser dio C. A wireless sensor network for smart
irrigation and environmental monitoring[C]∥EFITA/WCCA Vila Real
Portugal, 2005: 845-850.
[3] Bogena H R, Huisman J A, Oberd rster C, etal. Evaluation of a low-cost
soil water content sensor for wireless network applications[J]. Journal of
Hydrology, 2007, 344(2): 32-42.
[4] F.J. Pierce,T.V. Elliott. Regional and on-farm wireless sensor networks
for agricultural systems in Eastern Washington .Computers and
Electronics in Agriculture, 2008, 61 (1) :32-43.
[5] Zeng X Z, Liu G, Zheng D P, et al. Study and development of a field
information acquisition system based on wireless technique[C]∥Actual
Tasks on Agricultural Engineering, Opatija, CROATIA, 2006: 371-377.
[6] Pottie G J, Kaiser W J. Wireless integrated network
sensors[J].Communications of the ACM, 2000,43(5): 51-58.
[7] Sun Zhongfu, Du K M, Han H F, et al. Design of a telemonitoring
system for data acquisition of livestock environment[C]∥Livestock
EnvironmentⅧ-Proceedings of the 8th International Symposium,
Iguassu Falls, Brazil: ASABE, 2008: 995-1000.
[8] Hill J L, Culler D E. Mica: a wireless platform for deeply embedded
networks[J].IEEE Micro, 2002,22(6):12-22.
[9] Wang Fengyun, Zhao Yimin, Zhang Xiaoyan, et al. Intelligent measurecontrol
system design based on sectional-control strategy in
greenhouse[J]. Transactions of the Chinese Society for Agricultural
Machinery, 2009,40(5):178-181.
[10] Zhong Ziguo,Hu Aiqun,Wang Dan. Phasical-Layer design of wireless
sensor network node[J]. Journal of SoutheastUniversity, 2006, 22(1): 21-
25.
[11] Zhao Hai, Zhao Jie, Liu Zheng, et al. Design and implementation of a
wireless sensor network node[J]. Journal of Northeastern University:
Natural Science, 2009,30(6):809-812.
[12] Zhang Rongbiao, Gu Guodong, Feng Youbing, et al. Realization of
communication in wireless monitoring system in greenhouse based on
IEEE802.15.4[J]. Transactions of the Chinese Society for Agricultural
Machinery, 2008,39(8):119-122,127.

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