Swinburne
Browse

Scheduling disciplines for multimedia WLANs: embedded round robin and wireless dual queue

Download (640.23 kB)
conference contribution
posted on 2024-07-13, 06:23 authored by Ravindra S. Ranasinghe, Lachlan L. H. Andrew, David A. Hayes, David Everitt
Wireless local area networks have developed into a promising solution to support advanced data services in untethered environments. Selection of an efficient packet-scheduling scheme is important for managing the bandwidth while satisfying QoS requirements of active sessions having diverse traffic characteristics. The key difficulty is the distributed nature of the queues in the uplink, resulting in the scheduler having to trade off polling greedy stations against wasting resources by polling potentially idle stations. In order to address this, we propose a novel scheduling scheme, 'Embedded Round Robin', which dynamically classifies stations as 'busy' and 'clear'. We then extend the recently proposed Dual Queue scheduling discipline to the case of wireless networks.

History

Available versions

PDF (Published version)

ISSN

0536-1486

Journal title

IEEE International Conference on Communications (ICC 2001), Helsinki, Finland, 11-14 June 2001

Conference name

IEEE International Conference on Communications ICC 2001, Helsinki, Finland, 11-14 June 2001

Volume

4

Issue

1

Pagination

5 pp

Publisher

IEEE

Copyright statement

Copyright © 2001 IEEE. The published version is reproduced in accordance with the copyright policy of the publisher. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE.

Language

eng

Usage metrics

    Publications

    Categories

    No categories selected

    Keywords

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC