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Transmit Signal and Bandwidth Optimization in Multiple-Antenna Relay Channels

In a multiple-antenna relay channel, the full-duplex cut-set capacity upper bound and decode-and-forward rate are formulated as convex optimization problems. For half-duplex relaying, bandwidth allocation and transmit signals are optimized jointly. Moreover, achievable rates based on the compress-an...

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Published in:IEEE transactions on communications 2011-11, Vol.59 (11), p.2987-2992
Main Authors: Ng, C. T. K., Foschini, G. J.
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description In a multiple-antenna relay channel, the full-duplex cut-set capacity upper bound and decode-and-forward rate are formulated as convex optimization problems. For half-duplex relaying, bandwidth allocation and transmit signals are optimized jointly. Moreover, achievable rates based on the compress-and-forward strategy are presented using rate-distortion and Wyner-Ziv compression schemes.
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subjects Access methods and protocols, osi model
Antennas
Applied sciences
Bandwidth allocation
Channel capacity
convex optimization
Covariance matrix
Exact sciences and technology
MIMO
Optimization
Organization, operation and development plans
Radiocommunications
relay channel
Relays
Resource management
Telecommunications
Telecommunications and information theory
Teleprocessing networks. Isdn
transmit covariance matrix
Upper bound
title Transmit Signal and Bandwidth Optimization in Multiple-Antenna Relay Channels
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