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  4. Fully adaptive power saving protocols for ad hoc networks using the Hyper Quorum System
 
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Fully adaptive power saving protocols for ad hoc networks using the Hyper Quorum System

Journal
The 28th International Conference on Distributed Computing Systems, ICDCS 2008
Pages
785-792
Date Issued
2008
Author(s)
Wu, S.-H.
Chen, M.-S.
Chen, C.-M.
MING-SYAN CHEN  
DOI
10.1109/ICDCS.2008.88
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-51849103220&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/340624
Abstract
Quorum-based Power Saving (QPS) protocols have been proposed for ad hoc networks (e.g., IEEE 802.11 ad hoc mode) to increase energy efficiency and prolong the operational time of mobile stations. These protocols assign to each station a cycle pattern that specifies when the station should wake up (to transmit/receive data) and sleep (to save battery power). In all existing QPS protocols, the cycle length is either identical for all stations or is restricted to certain numbers (e.g. squares or primes). These restrictions on cycle length severely limit the practical use of QPS protocols as each individual station may want to select a cycle length that is best suited for its own need (in terms of remaining battery power, tolerable packet delay, and drop ratio). In this paper we propose the notion of Hyper Quorum System (HQS)-a generalization of QPS that allows for arbitrary cycle lengths. We describe algorithms to generate two different classes of HQS given any set of arbitrary cycle lengths as input. We then present analytical and simulation results that show the benefits of HQS-based power saving protocols over the existing QPS protocols. © 2008 IEEE.
SDGs

[SDGs]SDG7

Other Subjects
Computer systems; Conservation; Efficiency; Energy conservation; Energy efficiency; Laws and legislation; Standards; Wireless telecommunication systems; Ad hoc mode; Battery powered; Cycle length; Distributed computing systems; IEEE 802.11; International conferences; Mobile stations; Packet delays; Power saving protocols; Power savings; Practical use; Quorum systems; Simulation results; Ad hoc networks
Type
conference paper

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