DocumentCode
60146
Title
Low-Complexity Distributed Beamforming for Relay Networks With Real-Valued Implementation
Author
Lei Zhang ; Wei Liu ; Jian Li
Author_Institution
Commun. Technol. Lab., Huawei Technol. Co., Ltd., Shenzhen, China
Volume
61
Issue
20
fYear
2013
fDate
Oct.15, 2013
Firstpage
5039
Lastpage
5048
Abstract
The distributed beamforming problem for amplify-and-forward relay networks is studied. Maximizing output SNR (signal-to-noise ratio) for distributed beamforming can be considered as a generalized eigenvector problem (GEP) and the principal eigenvector and its eigenvalue can be derived with a standard closed-form solution. In this paper, four classes of beamforming algorithms are derived based on different design criteria and constraints, including maximizing output SNR subject to a constraint on the total transmitted signal power, minimizing the total transmitted signal power subject to certain level of output SNR, minimizing the relay node number subject to constraints on the total signal power and output SNR, and a robust algorithm to deal with channel estimation errors. All of the algorithms have a low computational complexity due to the proposed real-valued implementation.
Keywords
amplify and forward communication; array signal processing; channel estimation; computational complexity; matrix algebra; relay networks (telecommunication); GEP; SNR; amplify-and-forward relay networks; channel estimation errors; design criteria; generalized eigenvector problem; low computational complexity; low-complexity distributed beamforming algorithm; principal eigenvector; relay node; signal-to-noise ratio; standard closed-form solution; Algorithm design and analysis; Array signal processing; Peer-to-peer computing; Relays; Robustness; Signal to noise ratio; Distributed beamforming; generalized eigenvector problem; relay networks; robust algorithm;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2013.2274957
Filename
6570497
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