Capacity Bounds for AF Dual-hop Relaying in G Fading Channels
Artikel i vetenskaplig tidskrift, 2012

We investigate the ergodic capacity of amplify-and-forward (AF) dual-hop relaying systems in composite Nakagami-m/inverse-Gaussian fading channels. This type of fading, which is known in the literature as G fading, has recently attracted increasing research interest due to its ability to better approximate the Nakagami-m/lognormal model, compared with the Nakagami-m/gamma model. We study both fixed-and variable-gain relaying systems and present analytical upper and lower bounds for the ergodic capacity of dual-hop relaying systems with not necessarily identical hops; these bounds provide an efficient means to evaluate the ergodic capacity of AF dual-hop relaying systems over G fading channels. We also establish sufficient conditions for the existence of the bounds, depending on the values of the fading parameters. In both cases, our simulation results demonstrate that the proposed upper and lower bounds remain relatively tight for different fading conditions.

analysis

Nakagami-m/inverse-

networks

ergodic capacity

performance

ergodic capacity

dual-hop transmission

transmissions

composite multipath/shadowing channels

systems

Amplify-and-forward (AF) relaying

Författare

C. J. Zhong

Zhejiang University

Michail Matthaiou

Chalmers, Signaler och system, Signalbehandling och medicinsk teknik

G. K. Karagiannidis

Aristotelio Panepistimio Thessalonikis

A. P. Huang

Zhejiang University

Z. Y. Zhang

Zhejiang University

IEEE Transactions on Vehicular Technology

0018-9545 (ISSN) 1939-9359 (eISSN)

Vol. 61 4 1730-1740 6153084

Ämneskategorier

Telekommunikation

DOI

10.1109/TVT.2012.2188110

Mer information

Skapat

2017-10-06