DocumentCode :
153848
Title :
Practical Capacity Benchmarking for Wireless Networks
Author :
Jun Sun ; Narula-Tam, Aradhana ; Kuperman, Greg ; Gremban, Keith
fYear :
2014
fDate :
6-8 Oct. 2014
Firstpage :
922
Lastpage :
928
Abstract :
Recent advances in the optimal design of cross-layer congestion control, routing and scheduling algorithms allow us to calculate wireless network capacity [3]. However, for large networks, the algorithm is computationally intractable. In this paper, we provide an upper bound on the wireless network capacity that is computationally efficient to implement. Our upper bound calculations consider multiple different wireless interference models. Our approach draws on results from multicommodity flow over the sparsest cut. We develop a polynomial time randomized algorithm to approximate the sparsest cut in general wireless networks. To ascertain the performance of our upper bound, we use the cross-layer approach in [3] to develop a lower bound by considering only a subset of independent sets. The lower bound is shown to be within 95 percent of our upper bound on average for the primary interference model. For 802.11, 802.16 and the 2-hop interference models, the lower bound is within 70 percent of the upper bound. By applying the sparsest cut recursively in the network, we also develop a capacity heat map that allows us to visualize the regional capacity and identify network bottlenecks.
Keywords :
interference; mobile ad hoc networks; randomised algorithms; telecommunication congestion control; 2-hop interference models; MANET; cross-layer congestion control; mobile ad hoc network; multicommodity flow; network bottlenecks; polynomial time randomized algorithm; primary interference model; regional capacity; wireless interference models; wireless network capacity; IEEE 802.11 Standards; IEEE 802.16 Standards; Interference; Particle separators; Upper bound; Wireless networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Military Communications Conference (MILCOM), 2014 IEEE
Conference_Location :
Baltimore, MD
Type :
conf
DOI :
10.1109/MILCOM.2014.159
Filename :
6956879
Link To Document :
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