DocumentCode
1759965
Title
Rate Adaptation for 802.11 Multiuser MIMO Networks
Author
Wei-Liang Shen ; Lin, Kate Ching-Ju ; Gollakota, Shyamnath ; Ming-Syan Chen
Author_Institution
Res. Center for Inf. Technol. Innovation, Acad. Sinica, Taipei, Taiwan
Volume
13
Issue
1
fYear
2014
fDate
Jan. 2014
Firstpage
35
Lastpage
47
Abstract
In multiuser MIMO (MU-MIMO) networks, the optimal bit rate of a user is highly dynamic and changes from one packet to the next. This breaks traditional bit rate adaptation algorithms, which rely on recent history to predict the best bit rate for the next packet. To address this problem, we introduce TurboRate, a rate adaptation scheme for MU-MIMO LANs. TurboRate shows that clients in an MU-MIMO LAN can adapt their bit rate on a per-packet basis if each client learns two variables: Its SNR when it transmits alone to the access point, and the direction along which its signal is received at the AP. TurboRate also shows that each client can compute these two variables passively without exchanging control frames with the access point. A TurboRate client then annotates its packets with these variables to enable other clients to pick the optimal bit rate and transmit concurrently to the AP. A prototype implementation in USRP-N200 shows that traditional rate adaptation does not deliver the gains of MU-MIMO WLANs, and can interact negatively with MU-MIMO, leading to low throughput. In contrast, enabling MU-MIMO with TurboRate provides a mean throughput gain of 1.7× and 2.3×, for 2-antenna and 3-antenna APs, respectively.
Keywords
MIMO communication; antennas; error statistics; multi-access systems; wireless LAN; 802.11 multiuser MIMO networks; MU-MIMO WLAN; MU-MIMO networks; SNR; TurboRate; USRP-N200; access point; antenna AP; mean throughput gain; optimal bit rate; per-packet basis; rate adaptation scheme; Antennas; Bit rate; IEEE 802.11 Standards; Mobile computing; Signal to noise ratio; Throughput; Vectors; Antennas; Bit rate; IEEE 802.11 Standards; Mobile computing; Multiuser MIMO networks; Signal to noise ratio; Throughput; Vectors; rate adaptation;
fLanguage
English
Journal_Title
Mobile Computing, IEEE Transactions on
Publisher
ieee
ISSN
1536-1233
Type
jour
DOI
10.1109/TMC.2013.115
Filename
6585255
Link To Document