DocumentCode :
136988
Title :
Load-aware routing for non-persistent small-world wireless mesh networks
Author :
Gaur, Nidhi ; Chakraborty, Arpan ; Manoj, B.S.
Author_Institution :
Indian Inst. of Space Sci. & Technol. (IIST), Thiruvananthapuram, India
fYear :
2014
fDate :
Feb. 28 2014-March 2 2014
Firstpage :
1
Lastpage :
6
Abstract :
Wireless mesh network is a distributed multi-hop relaying network. A large scale wireless mesh network typically has high value of network average path length which results in reduced throughput and increased delay in the network. Average path length can be reduced in the network by implementing a few long-links among the network node-pairs, and thus introduces the small-world characteristics in the wireless mesh networks. However, the conventional routing algorithms are not optimized for small-world wireless mesh networks. In this paper, we propose a Load-aware Non-Persistent small-world longlink Routing (LNPR) algorithm for small-world wireless mesh networks to achieve lower average transmission path length for data transfer sessions among a set of source-node and destination-node pairs in the network. LNPR uses load balancing strategy to better distribute the network traffic among the normal-links and the non-persistent long-links in the small-world wireless mesh networks for efficient use of long-links which are precious data transmission paths in the network. LNPR provides 58% to 95% improvement in call blocking probability and 23% to 70% in maximum load reduction with increment ranging from only 0.7% to 9% increase in average transmission path length. Small-world wireless mesh networks find numerous applications in rural and community networks for cost-effective communication.
Keywords :
relay networks (telecommunication); resource allocation; telecommunication links; telecommunication network routing; telecommunication traffic; wireless mesh networks; data transfer sessions; destination node; distributed multihop relaying network; load aware nonpersistent small world longlink routing algorithm; load balancing strategy; network average path length; network node pairs; network traffic; nonpersistent small world wireless mesh networks; source node; transmission path length; Context; Data transfer; Directive antennas; Routing; Tin; Wireless mesh networks; LNPR algorithm; Small-world wireless mesh network; average transmission path length; long-links;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (NCC), 2014 Twentieth National Conference on
Conference_Location :
Kanpur
Type :
conf
DOI :
10.1109/NCC.2014.6811239
Filename :
6811239
Link To Document :
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