Transmit Signal and Bandwidth Optimization in Multiple-Antenna Relay Channels
Abstract
Transmit signal and bandwidth optimization is considered in multiple-antenna relay channels. Assuming all terminals have channel state information, the cut-set capacity upper bound and decode-and-forward rate under full-duplex relaying are evaluated by formulating them as convex optimization problems. For half-duplex relays, bandwidth allocation and transmit signals are optimized jointly. Moreover, achievable rates based on the compress-and-forward transmission strategy are presented using rate-distortion and Wyner-Ziv compression schemes. It is observed that when the relay is close to the source, decode-and-forward is almost optimal, whereas compress-and-forward achieves good performance when the relay is close to the destination.
Cite
@article{arxiv.1001.2938,
title = {Transmit Signal and Bandwidth Optimization in Multiple-Antenna Relay Channels},
author = {Chris T. K. Ng and Gerard J. Foschini},
journal= {arXiv preprint arXiv:1001.2938},
year = {2011}
}
Comments
16 pages, 10 figures