DocumentCode
1807807
Title
A hybrid channel hopping scheme for Wireless Sensor Networks Based on IEEE 802.15.4
Author
Li, Yong ; Sun, Hairong ; Huang, Yibin
Author_Institution
Key Lab. of Network Control & Intell. Instrum., Chongqing Univ. of Posts & Telecommun., Chongqing, China
Volume
4
fYear
2011
fDate
24-26 Dec. 2011
Firstpage
2764
Lastpage
2768
Abstract
To possess more sensor nodes and maximize the capacity of future networks, anti-interference technology becomes one of the important research subjects in Wireless Sensor Networks (WSNs). The previous studies indicate that the dynamic timeslot allocation and channel hopping can solve the interference problem, while a pure channel hopping technology may lose other network performances. Combined with the dynamic resource allocation (DRA) and the theory of the channel hopping technology, this paper proposes a hybrid channel hopping scheme for WSNs based on IEEE 802.15.4. In this scheme, it introduces two channel modes (channel hopping mode and channel adaption mode). Nodes select the channel mode, dynamically apply for a channel or timeslots by DRA request, and automatically switch the channel mode according to the channel condition. The experimental results show that the proposed scheme can effectively improve the anti-interference capability and enhance the network capacity.
Keywords
Zigbee; channel allocation; radiofrequency interference; telecommunication switching; wireless sensor networks; IEEE 802.15.4; antiinterference technology; channel adaption mode; channel hopping mode; channel hopping technology; dynamic resource allocation; dynamic timeslot allocation; hybrid channel hopping scheme; wireless sensor networks; Logic gates; adaptive channel hopping; channel hopping; dynamic superframe allocation; hybrid channel hopping;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Science and Network Technology (ICCSNT), 2011 International Conference on
Conference_Location
Harbin
Print_ISBN
978-1-4577-1586-0
Type
conf
DOI
10.1109/ICCSNT.2011.6182537
Filename
6182537
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