A Wireless Sensor Networks Monitoring Device Based on ZigBee

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Abstract:

environmental monitoring should have real-time, reliability and sustainability,the article design a device which can meet the request of environmental monitoring. the wireless sensor networks device based on ZigBee is described in detailed, meanwhile, a new routing strategy based on LEACH algorithm is proposed,implement of the strategy is described in the thesis.The new routing strategy is suitable for the long time monitoring, and realized the establishment of network cluster head nodes, broadcasting, selection and scheduling. According to the distance and energy consumption of nodes make a decision that the node joining a cluster or as a separate node directly communicate with the control node.The simulation results show that the device can real-time collection and remote transmission environmental temperature, humidity and other information, reduce energy consumption of data transmission, Prolong the network life-time, improve the network quality, and ensure the wireless sensor networks stable wrok,realize the network optimization.

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2077-2081

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Liu Yun-huai, Zhang Qian, and Ni L M. Opportunity-based topology control in wireless sensor networks. IEEE Transactions on Parallel and Distributed Systems, 2010, 21(3): 405-416.

DOI: 10.1109/tpds.2009.57

Google Scholar

[2] Cao X H, Chen J M, Zhang Y, et al. Development of an integrated wireless sensor network micro-environmental monitoring system. ISA Transactions, 2008, 47(3): 247-255.

DOI: 10.1016/j.isatra.2008.02.001

Google Scholar

[3] Han J, Lee H, Park K R. Remote-controllable and Energy-Saving Room Architecture based on Zigbee Communication. IEEE Transactions on Consumer Electronics, 2009, 55: 264-268.

DOI: 10.1109/tce.2009.4814444

Google Scholar

[4] Kim T, Kim D, Park N, et al. Shortcut Tree Rounting in ZigBee Network. Wireless Pervasive Computing, 2007, 13(5): 11-13.

Google Scholar

[5] Yen L H, Tsai W T. Flexible Address Configurations for Tree-Based ZigBee/IEEE 802. 15. 4 Wireless Networks. 22nd International Conference on Advanced Information Networking and Applications, 2008, 24: 395-402.

DOI: 10.1109/aina.2008.15

Google Scholar

[6] Wu M, Xu J, Tang X, et al. Top-k monitoring in wireless sensor network. IEEE Transaction on Knowledge and Data Engineering, 2007, 19(7): 962-976.

DOI: 10.1109/tkde.2007.1038

Google Scholar

[7] Sahinoglu Z, Orlik P, Bhargave B. Tree-Based Data Broadcast in IEEE802. 15. 4 and ZigBeeNetwork. IEEE Transaction on Mobile Computing. 2006, 5(11): 1561-1574.

DOI: 10.1109/tmc.2006.172

Google Scholar

[8] Enwall T, Bahl V. Building large-scale ZigBee systems with Web services. Sensors, 2005, 22(5): 24 -29.

Google Scholar