On the queue-overflow probabilities of a class of distributed scheduling algorithms

In this paper, we are interested in using large-deviations theory to characterize the asymptotic decay-rate of the queue-overflow probability for distributed wireless scheduling algorithms, as the overflow threshold approaches infinity. We consider ad hoc wireless networks where each link interferes...

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Published inComputer networks (Amsterdam, Netherlands : 1999) Vol. 55; no. 1; pp. 343 - 355
Main Authors Zhao, Can, Lin, Xiaojun
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier B.V 07.01.2011
Elsevier
Elsevier Sequoia S.A
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ISSN1389-1286
1872-7069
DOI10.1016/j.comnet.2010.08.007

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Abstract In this paper, we are interested in using large-deviations theory to characterize the asymptotic decay-rate of the queue-overflow probability for distributed wireless scheduling algorithms, as the overflow threshold approaches infinity. We consider ad hoc wireless networks where each link interferes with a given set of other links, and we focus on a distributed scheduling algorithm called Q-SCHED, which is introduced by Gupta et al. First, we derive a lower bound on the asymptotic decay rate of the queue-overflow probability for Q-SCHED. We then present an upper bound on the decay rate for all possible algorithms operating on the same network. Finally, using these bounds, we are able to conclude that, subject to a given constraint on the asymptotic decay rate of the queue-overflow probability, Q-SCHED can support a provable fraction of the offered loads achievable by any algorithms.
AbstractList In this paper, we are interested in using large-deviations theory to characterize the asymptotic decay-rate of the queue-overflow probability for distributed wireless scheduling algorithms, as the overflow threshold approaches infinity. We consider ad hoc wireless networks where each link interferes with a given set of other links, and we focus on a distributed scheduling algorithm called Q-SCHED, which is introduced by Gupta et al. First, we derive a lower bound on the asymptotic decay rate of the queue-overflow probability for Q-SCHED. We then present an upper bound on the decay rate for all possible algorithms operating on the same network. Finally, using these bounds, we are able to conclude that, subject to a given constraint on the asymptotic decay rate of the queue-overflow probability, Q-SCHED can support a provable fraction of the offered loads achievable by any algorithms.
In this paper, we are interested in using large-deviations theory to characterize the asymptotic decay-rate of the queue-overflow probability for distributed wireless scheduling algorithms, as the overflow threshold approaches infinity. We consider ad hoc wireless networks where each link interferes with a given set of other links, and we focus on a distributed scheduling algorithm called Q-SCHED, which is introduced by Gupta et al. First, we derive a lower bound on the asymptotic decay rate of the queue-overflow probability for Q-SCHED. We then present an upper bound on the decay rate for all possible algorithms operating on the same network. Finally, using these bounds, we are able to conclude that, subject to a given constraint on the asymptotic decay rate of the queue-overflow probability, Q-SCHED can support a provable fraction of the offered loads achievable by any algorithms. [PUBLICATION ABSTRACT]
Author Lin, Xiaojun
Zhao, Can
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Cites_doi 10.1109/CDC.2009.5399662
10.1109/CDC.2004.1429242
10.1109/9.182479
10.1109/TIT.2006.883633
10.1109/TAC.2008.917736
10.1109/TNET.2009.2037896
10.1007/s11134-008-9072-y
10.1109/INFCOM.2010.5462117
10.1109/CDC.2006.376968
10.1109/TNET.2006.872546
10.1109/90.251894
10.1109/INFCOM.2007.191
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Issue 1
Keywords Scheduling algorithms
Large deviations
Wireless networks
Quality of service
Overflow(computer arithmetics)
Lower bound
Wireless telecommunication
Asymptotic behavior
Teletraffic
Scheduling
Large deviation
Upper bound
Queueing system
Traffic management
Distributed algorithm
Traffic control
Wireless network
Ad hoc network
Service quality
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Snippet In this paper, we are interested in using large-deviations theory to characterize the asymptotic decay-rate of the queue-overflow probability for distributed...
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SubjectTerms Algorithms
Applied sciences
Asymptotic properties
Business and industry local networks
C (programming language)
Decay rate
Distributed processing
Exact sciences and technology
Large deviations
Links
Miscellaneous
Networks
Networks and services in france and abroad
Operation, maintenance, reliability
Probability
Quality of service
Queues
Queuing
Scheduling
Scheduling algorithms
Studies
Systems, networks and services of telecommunications
Telecommunications
Telecommunications and information theory
Teleprocessing networks. Isdn
Teletraffic
Wireless networks
Title On the queue-overflow probabilities of a class of distributed scheduling algorithms
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