DocumentCode :
170395
Title :
Heat-Diffusion: Pareto optimal dynamic routing for time-varying wireless networks
Author :
Banirazi, Reza ; Jonckheere, E. ; Krishnamachari, Bhuma
Author_Institution :
Dept. of Electr. Eng., Univ. of Southern California, Los Angeles, CA, USA
fYear :
2014
fDate :
April 27 2014-May 2 2014
Firstpage :
325
Lastpage :
333
Abstract :
A new routing policy, named Heat-Diffusion (HD), is developed for multihop wireless networks subject to stochastic arrivals, time-varying topology, and inter-channel interference, using only current queue congestion and current channel states, without requiring the knowledge of topology and arrivals. Besides throughput optimality, HD minimizes a quadratic routing cost defined by endowing each channel with a cost-factor. It also minimizes average total queue congestion, and so average network delay, within the class of routing policies that base decision only on current queue lengths and current channel states. Further, within this class, HD provides a Pareto optimal tradeoff between average delay and average routing cost, meaning that no policy can improve either one without detriment to the other. Finally, HD fluid limit follows graph combinatorial heat equation that opens a new way to study wireless networks using heat calculus, a very active area of pure mathematics.
Keywords :
Pareto optimisation; radio networks; radiofrequency interference; stochastic processes; telecommunication network routing; Pareto optimal dynamic routing; current channel states; current queue congestion; graph combinatorial heat equation; heat calculus; heat-diffusion; inter-channel interference; multihop wireless networks; quadratic routing; routing policies; routing policy; stochastic arrivals; time-varying topology; time-varying wireless networks; Delays; Heating; High definition video; Minimization; Routing; Vectors; Wireless networks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
INFOCOM, 2014 Proceedings IEEE
Conference_Location :
Toronto, ON
Type :
conf
DOI :
10.1109/INFOCOM.2014.6847954
Filename :
6847954
Link To Document :
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