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Media-specific rate allocation in heterogeneous wireless networks
作者姓名:JURCA Dan  FROSSARD Pascal
作者单位:Ecole Polytechnique Fédérale de Lausanne Signal Processing Institute Lausanne CH-1015 Switzerland,Ecole Polytechnique Fédérale de Lausanne Signal Processing Institute Lausanne CH-1015 Switzerland
基金项目:Project (No. PP002-68737) supported by the Swiss National ScienceFoundation (Swiss NSF), Switzerland
摘    要:INTRODUCTION With the development of novel wireless tech- nologies and increasing available bandwidth, multi- media applications over wireless networks become attractive for both businesses and end users. Fast de- ployment of Wi-Fi HotSpots, increase in wireless coverage of remote habitable areas (Wi-Max, or wireless mesh networks), improved data services over the 2G cellular systems and the long awaited debut of 3G wireless services offer many potential and inter- operable communicatio…

收稿时间:10 December 2005
修稿时间:25 February 2006

Media-specific rate allocation in heterogeneous wireless networks
JURCA Dan,FROSSARD Pascal.Media-specific rate allocation in heterogeneous wireless networks[J].Journal of Zhejiang University Science,2006,7(5):713-726.
Authors:Dan Jurca  Pascal Frossard
Institution:Ecole Polytechnique Federale de Lausanne, Signal Processing Institute, Lausanne CH-l015, Switzerland Ecole Polytechnique Federale de Lausanne, Signal Processing Institute, Lausanne CH-l015, Switzerland
Abstract:We address the problem of joint path selection and rate allocation in multipath wireless streaming, in order to optimize a media specific quality of service. We leverage on the existence of multiple parallel wireless services, in order to enhance the received video quality at a wireless client. An optimization problem is proposed, aimed at minimizing a video distortion metric based on sequence-dependent parameters, and transmission channel characteristics, for a given wireless network infrastructure.Even if joint optimal path selection and rate allocation is in general an NP complete problem, an in-depth analysis of the media distortion evolution allows defining a low complexity optimal streaming strategy, under reasonable network assumptions. In particular, we show that a greedy allocation of rates along paths with increasing error probability leads to an optimal solution. We argue that a network path should not be chosen for transmission, unless all other available paths with lower error probability have been chosen. Moreover, the chosen paths should be used at their maximum end-to-end bandwidth. These results are demonstrated for both independent network paths, and non-disjoint channel segments, in generic network topologies. Simulation results showed that the optimal rate allocation carefully trades off total encoding/transmission rate, with the end-to-end transmission error probability and the number of chosen paths. In many cases, the optimal rate allocation provides more than 20% improvement in received video quality, compared to heuristic-based algorithms.
Keywords:Multipath streaming  Path selection  Rate allocation  Video streaming
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