DocumentCode
934935
Title
On Scheduling for Multiple-Antenna Wireless Networks Using Contention-Based Feedback
Author
Park, Seung Young ; Park, Daeyoung ; Love, David J.
Author_Institution
Purdue Univ., West Lafayette
Volume
55
Issue
6
fYear
2007
fDate
6/1/2007 12:00:00 AM
Firstpage
1174
Lastpage
1190
Abstract
Multiuser diversity gain is an effective technique for improving the performance of wireless networks. This gain can be exploited by scheduling the users with the best current channel conditions. However, this kind of scheduling requires that the base station (or access point) knows some kind of channel quality indicator (CQI) information for every user in the system. When the wireless link lacks channel reciprocity, each user must feed back this CQI information to the base station. The required feedback load makes exploiting multiuser diversity extremely difficult when the number of users becomes large. To alleviate this problem, this paper considers a contention-based CQI feedback where only users whose channel gains are larger than a threshold are allowed to transmit their CQI information through a spread-spectrum based contention channel. Considering the capture effect in this contention channel, it is shown that i) the multiuser diversity gain can be exploited regardless of the number of transmit antennas at the base station and ii) the total system throughput exponentially approaches that of the full feedback scheme as the spreading code length of the contention channel linearly increases. In addition, it is also shown that multiuser diversity can be maintained with the feedback delay of time-variant channels. We also consider the issue of differentiated rate scheduling, in which the base station gives different rates to different subsets of mobiles. In this scenario, mobiles feed back their CQI with some access probability, and we show this technique causes only a negligible throughput loss compared to the case without supporting differentiated rate.
Keywords
antenna arrays; diversity reception; mobile radio; scheduling; spread spectrum communication; channel quality indicator; contention based feedback; current channel conditions; feedback load; multiple antenna wireless networks; multiuser diversity gain; scheduling; wireless link; Antenna feeds; Base stations; Delay; Diversity methods; Feedback; Femtocell networks; Multiuser detection; Spread spectrum communication; Throughput; Wireless networks; CQI; Channel quality indicator; contention channel; feedback; multiuser diversity; opportunistic communication; random access; spread spectrum;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2007.898839
Filename
4237473
Link To Document