DocumentCode
2574292
Title
Proportional fair scheduling schemes for highly transmit correlated channels
Author
Sun, Qiang ; Wang, Jue ; Zhang, Yuan ; Jin, Shi ; Gao, Xiqi
Author_Institution
Nat. Mobile Commun. Res. Lab., Southeast Univ., Nanjing, China
fYear
2011
fDate
9-11 Nov. 2011
Firstpage
1
Lastpage
5
Abstract
In this paper, we consider the downlink heterogeneous scenario with highly transmit correlated channels, and propose two kinds of the statistical channel state information (SCSI) aided proportional fair scheduling (PFS) schemes: 1) signal-to-noise ratio based PFS (SNR PFS) scheme and 2) SNR PFS scheme with threshold, which determine the preferred beamforming vector and proportional fair index by exploiting the SCSI and only send back the instantaneous channel quality indicator (CQI) at each timeslot. Although the SNR PFS scheme only requires little feedback overhead and low computational complexity, the performance of the SNR PFS scheme is similar to the conventional scheme (i.e., codebook-based PFS scheme), which achieves a tradeoff between system throughput and fair- ness. However, with the increasing number of users, a large number of CQI feedbacks will increase the signaling burden. To overcome this obstacle, the proposed SNR PFS scheme with threshold which limits the CQI feedbacks with poor channel quality would hardly affect the performance of the system. Finally, Our simulation results show that the average rate of the SNR PFS scheme with β = In (K/5) approaches to that of the SNR PFS scheme, while it has less limited feedback capacity than the SNR PFS scheme.
Keywords
MIMO communication; array signal processing; channel capacity; computational complexity; scheduling; statistical analysis; CQI feedbacks; MIMO systems; beamforming vector; downlink heterogeneous scenario; feedback overhead; highly transmit correlated channels; instantaneous channel quality indicator; low computational complexity; multiple-input-multiple-output systems; proportional fair index; proportional fair scheduling schemes; signal-to-noise ratio; statistical channel state information; system throughput; Array signal processing; Computational complexity; Downlink; Indexes; Scheduling; Signal to noise ratio; Vectors; Proportional fair scheduling; statistical channel state information; transmit correlated channel;
fLanguage
English
Publisher
ieee
Conference_Titel
Wireless Communications and Signal Processing (WCSP), 2011 International Conference on
Conference_Location
Nanjing
Print_ISBN
978-1-4577-1009-4
Electronic_ISBN
978-1-4577-1008-7
Type
conf
DOI
10.1109/WCSP.2011.6096733
Filename
6096733
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