@inproceedings{2c4047efa21d4a5db000d3701921a91e,
title = "Yen{\.i} b{\.i}r e{\c s}deǧer r{\"o}le kanal model{\.i} {\.i}le GF(4) aǧ kodlamali k{\.i}p{\c c}{\"o}z-ve-{\.i}let r{\"o}le aǧinin hata ba{\c s}arim anal{\.i}z{\.i}",
abstract = "In this paper, a new equivalent relay channel model is developed for analyzing the error performance of detect-and-forward (DetF) relay networks and is compared to the minimum equivalent relay channel model typically used in DetF systems. The considered cooperative relay network comprises two users, single destination, 4-ary Galois field (GF(4)) network coded, QPSK modulated, DetF in a flat Rayleigh fading environment. The destination performs maximum likelihood (ML) decoding utilizing the error rates of the source-relay links. Pairwise error probability results show that the proposed equivalent channel model sucessfully approximates the relay channel.",
author = "Ilgin {\c S}afak and Emre Akta{\c s} and \{{\"O}zg{\"u}r Yilmaz\}, A.",
year = "2012",
doi = "10.1109/SIU.2012.6204447",
language = "T{\"u}rk{\c c}e",
isbn = "9781467300568",
series = "2012 20th Signal Processing and Communications Applications Conference, SIU 2012, Proceedings",
booktitle = "2012 20th Signal Processing and Communications Applications Conference, SIU 2012, Proceedings",
note = "2012 20th Signal Processing and Communications Applications Conference, SIU 2012 ; Conference date: 18-04-2012 Through 20-04-2012",
}