DocumentCode
1138113
Title
Joint channel- and queue-aware scheduling for multiuser diversity in wireless OFDMA networks
Author
Song, Guocong ; Li, Ye ; Cimini, Leonard J., Jr.
Author_Institution
SiBEAM Inc., Sunnyvale, CA, USA
Volume
57
Issue
7
fYear
2009
fDate
7/1/2009 12:00:00 AM
Firstpage
2109
Lastpage
2121
Abstract
In this paper, packet scheduling in an orthogonal frequency division multiplex access downlink is investigated based on cross-layer design and optimization. We first develop max-delay-utility scheduling with the help of channel and queue state information to exploit multiuser diversity and guarantee quality of service. The stability property of a scheduling policy is characterized by the stability region, which is the largest region on arrival rates for which the queueing system can be stabilized by the scheduling policy. It is shown in this paper that under very loose conditions, the max-delay-utility scheduling has the maximum stability region. In environments with insufficient scattering or strong line-of-sight components, delay transmit diversity can increase the fluctuation in the frequency domain to improve the performance. The simulation results show that the max-delay-utility scheduling with a frugality constraint is highly advantageous to data transmission with a low latency requirement over shared multiple channels, and that joint scheduling and power allocation can substantially boost the performance.
Keywords
diversity reception; frequency division multiple access; quality of service; queueing theory; resource allocation; scheduling; channel-aware scheduling; delay transmit diversity; max-delay-utility scheduling; multiuser diversity; orthogonal frequency division multiplex access; packet scheduling; quality of service; queue-aware scheduling; queueing system; resource allocation; wireless OFDMA networks; Cross layer design; Delay lines; Design optimization; Downlink; Fluctuations; Frequency division multiplexing; Quality of service; Scattering; Scheduling algorithm; Stability; Cross-layer design, OFDMA, resource allocation, stability;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2009.07.070394
Filename
5165406
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