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Linear Algebraic Beamforming Design for Multiuser MISO Interference Channels: A Reduction in Search Space Dimensionopen access

Authors
Choi, Sang WonShin, Won-YongKim, Juyeop
Issue Date
Jun-2018
Publisher
MDPI
Keywords
beamformer design; correlated block fading; interference channel; linear algebraic beamforming; search space dimension
Citation
ENTROPY, v.20, no.6
Journal Title
ENTROPY
Volume
20
Number
6
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/4495
DOI
10.3390/e20060431
ISSN
1099-4300
1099-4300
Abstract
Near-optimal transmit beamformers are designed for multiuser multiple-input single-output interference channels with slowly time-varying block fading. The main contribution of this article is to provide a method for deriving closed-form solutions to effective beamforming in both low and high signal-to-noise ratio regimes. The proposed method basically leverages side information obtained from the channel correlation between adjacent coding blocks. More specifically, our methodology is based on a linear algebraic approach, which is more efficient than the optimal scheme based on the Gaussian input in the sense of reducing the average number of search space dimensions for designing the near-optimal transmit beamformers. The proposed method is shown to exhibit near-optimal performance via computer simulations in terms of the average sum-rate.
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