IEEE International Conference on Information Theory and Information Security (ICITIS2011 , 2011-11-04

Title : ( The Capacity Region of Gaussian Fading Multiple Access Relay Channels with Orthogonal Components )

Authors: Mohammad Osmani Bojd , Assadallah Sahebalam , Ghosheh Abed Hodtani ,

Citation: BibTeX | EndNote

Abstract

Abstract— In this paper, we investigate the capacity problem of Gaussian fading multiple access relay channel with orthogonal components from the senders to the relay receiver and from the senders and relay to the receiver. This model is motivated by the practical constraint that a node cannot send and receive at the same time or in the same frequency band. We derive a capacity region for the model where partial Channel State Information (CSI) is available at the transmitters (CSIT) and perfect CSI is available at the receiver (CSIR). Superposition block Markov encoding and multiple access channel encoding and decoding strategies are used to prove the results.

Keywords

, Keywords, additive white Gaussian noise; Gaussian fading channels; channel state information; discrete multiple access relay channel; orthogonal components; discrete multiple access relay channel
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@inproceedings{paperid:1024679,
author = {Osmani Bojd, Mohammad and Sahebalam, Assadallah and Abed Hodtani, Ghosheh},
title = {The Capacity Region of Gaussian Fading Multiple Access Relay Channels with Orthogonal Components},
booktitle = {IEEE International Conference on Information Theory and Information Security (ICITIS2011},
year = {2011},
location = {Hongzhou},
keywords = {Keywords- additive white Gaussian noise; Gaussian fading channels; channel state information; discrete multiple access relay channel; orthogonal components; discrete multiple access relay channel},
}

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%0 Conference Proceedings
%T The Capacity Region of Gaussian Fading Multiple Access Relay Channels with Orthogonal Components
%A Osmani Bojd, Mohammad
%A Sahebalam, Assadallah
%A Abed Hodtani, Ghosheh
%J IEEE International Conference on Information Theory and Information Security (ICITIS2011
%D 2011

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