Water-Saving Monitoring System Design Based on LabView Simulation Platform

Article Preview

Abstract:

A water-saving irrigation monitoring system was designed based on ZigBee wireless sensor network and LabView simulation platform. This system can solve the problems of unnecessary waste caused by the traditional artificial irrigation water and wiring complex of water-saving control system. The information of each node and data acquisition can be detected by the ZigBee wireless network monitoring system. Upper machine was designed by LabView virtual design platform, and all aspects of organic characteristics of the crop water requirement rule were combined through the fuzzy control decision support system. The date of the irrigation water would be directed, and achieved a fine management of water and scientific irrigation.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

582-585

Citation:

Online since:

March 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Song Xiuyu, Zhang Xiaoxia, Wang Xiuru. Research on urbangreenbelt water-saving irrigation automatic control [J]. Chinese Agricultural Science Bulletin, 2011, 27 (6): 317-321.

Google Scholar

[2] Translated by Di Meiliang, the underground drip irrigation technique [J]. Water saving irrigation, 2002, (5): 33.

Google Scholar

[3] Qian Mengqing, in Hongchuan, Su Zhongbin. Study of paddy rice water-saving irrigation system and design of [J]. Agricultural research, 2012, 34 (12): 128-131.

Google Scholar

[4] Xu Zhiqing, Han Wenting, Zhang Chao. Study on the design of [J]. remote real-time acquisition system of agricultural mechanization of crop water information, 2013, 35 (3): 107-112.

Google Scholar

[5] Gao Shouwei, Wu Canyang. ZigBee technology practice tutorial [M]. Beijing: Beihang University press, (2009).

Google Scholar

[6] Zhang Weicong, Yu Xinwu, Li Zhongcheng, CC2530and ZigBee protocol stack design and application ofwireless sensor network node based on [J]. computer system, 2011, 20 (7): 185-187.

Google Scholar

[7] Hai-qing Yang, Yan Yang, Yong He. WirelessSensorNetwork for Orchard Soil and ClimateMonitoring[J]. Agricultural Mechanization in Asia, Africaand Latin America, 2010, 41 (3): 58-62.

Google Scholar

[8] Zhang Ruirui, Chen Liping, Guo Jianhua et al. Journal of soil monitoring wireless sensor network communication platform of [J]. agricultural engineering, 2008, 24 (2): 81-82.

DOI: 10.1049/cp.2010.1017

Google Scholar

[9] Zhou Jie, Zhou Xinzhi. Fuzzy control system design -dropper cases [J]. Anhui agricultural science to modern agricultural district of Hami City, 2012, 40 (1): 567-568572.

Google Scholar

[10] (Ke Luo) Kovacic, Bogdan, Hu Yuling et al. Fuzzycontroller design theory and application [M]. Beijing: Mechanical Industry Press, (2010).

Google Scholar