Full-Duplex Energy-Harvesting Enabled Relay Networks in Generalized Fading Channels
Signal Processing
2018-09-03 v1
Abstract
This paper analyzes the performance of a full-duplex decode-and-forward relaying network over the generalized \kappa-\mu fading channel. The relay is energy-constrained and relies entirely on harvesting the power signal transmitted by the source based on the time-switching relaying protocol. A unified analytical expression for the ergodic outage probability is derived for the system under consideration. This is then used to derive closed-form analytical expressions for three special cases of the \kappa-\mu fading model, namely, Nakagami-m, Rice and Rayleigh. Monte Carlo simulations are provided throughout to verify the correctness of our analysis.
Keywords
Cite
@article{arxiv.1808.10743,
title = {Full-Duplex Energy-Harvesting Enabled Relay Networks in Generalized Fading Channels},
author = {Khaled Rabie and Bamidele Adebisi and Galymzhan Nauryzbayev and Osamah S. Badarneh and Xingwang Li and Mohamed-Slim Alouini},
journal= {arXiv preprint arXiv:1808.10743},
year = {2018}
}