DocumentCode
1497160
Title
Cross-layer reduction of wireless network card idle time to optimize energy consumption of pull thin client protocols
Author
Simoens, Pieter ; Ali, Farhan Azmat ; Vankeirsbilck, Bert ; Deboosere, Lien ; De Turck, Filip ; Dhoedt, Bart ; Demeester, Piet ; Torrea-Duran, Rodolfo ; Van der Perre, Liesbet ; Dejonghe, Antoine
Author_Institution
HoGent, Ghent, Belgium
Volume
14
Issue
1
fYear
2012
Firstpage
75
Lastpage
90
Abstract
Thin client computing trades local processing for network bandwidth consumption by offloading application logic to remote servers. User input and display updates are exchanged between client and server through a thin client protocol. On wireless devices, the thin client protocol traffic can lead to a significantly higher power consumption of the radio interface. In this article, a cross-layer framework is presented that transitions the wireless network interface card (WNIC) to the energy-conserving sleep mode when no traffic from the server is expected. The approach is validated for different wireless channel conditions, such as path loss and available bandwidth, as well as for different network roundtrip time values. Using this cross-layer algorithm for sample scenario with a remote text editor, and through experiments based on actual user traces, a reduction of the WNIC energy consumption of up to 36.82% is obtained, without degrading the application´s reactivity.
Keywords
client-server systems; energy conservation; energy consumption; protocols; wireless channels; application logic; cross-layer algorithm; cross-layer reduction; energy consumption optimisation; energy-conserving sleep mode; network bandwidth consumption; pull thin client protocol; radio interface; remote text editor; thin client computing; thin client protocol traffic; wireless channel condition; wireless device; wireless network card idle time; wireless network interface card; Algorithm design and analysis; Computer architecture; Energy consumption; Protocols; Servers; Wireless communication; Cross-layer; energy optimization; power consumption; wireless thin client;
fLanguage
English
Journal_Title
Communications and Networks, Journal of
Publisher
ieee
ISSN
1229-2370
Type
jour
DOI
10.1109/JCN.2012.6184553
Filename
6184553
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