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Resource allocation and cross-layer control in wireless networks

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Auteur
Georgiadis, L.; Neely, M. J.; Tassiulas, L.
Date
2006
DOI
10.1561/1300000001
Sujet
Energy utilization
Fading (radio)
Information dissemination
Mathematical models
Resource allocation
Telecommunication networks
Telecommunication traffic
Fading channels
Network control
Network topologies
Throughput maximization
Wireless telecommunication systems
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Résumé
Information flow in a telecommunication network is accomplished through the interaction of mechanisms at various design layers with the end goal of supporting the information exchange needs of the applications. In wireless networks in particular, the different layers interact in a nontrivial manner in order to support information transfer. In this text we will present abstract models that capture the cross-layer interaction from the physical to transport layer in wireless network architectures including cellular, ad-hoc and sensor networks as well as hybrid wireless-wireline. The model allows for arbitrary network topologies as well as traffic forwarding modes, including datagrams and virtual circuits. Furthermore the time varying nature of a wireless network, due either to fading channels or to changing connectivity due to mobility, is adequately captured in our model to allow for state dependent network control policies. Quantitative performance measures that capture the quality of service requirements in these systems depending on the supported applications are discussed, including throughput maximization, energy consumption minimization, rate utility function maximization as well as general performance functional. Cross-layer control algorithms with optimal or suboptimal performance with respect to the above measures are presented and analyzed. A detailed exposition of the related analysis and design techniques is provided.
URI
http://hdl.handle.net/11615/27741
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