
Performance analysis of protograph low‐density parity‐check codes for Nakagami‐ m fading relay channels
Author(s) -
Fang Yi,
Wong KaiKit,
Wang Lin,
Tong KinFai
Publication year - 2013
Publication title -
iet communications
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.355
H-Index - 62
eISSN - 1751-8636
pISSN - 1751-8628
DOI - 10.1049/iet-com.2013.0136
Subject(s) - fading , decoding methods , nakagami distribution , algorithm , computer science , bit error rate , relay , low density parity check code , additive white gaussian noise , telecommunications , physics , channel (broadcasting) , power (physics) , quantum mechanics
In this study, the authors investigate the error performance of the protograph (low‐density parity check) codes over Nakagami‐ m fading relay channels. The authors first calculate the decoding thresholds of the protograph codes over such channels with different fading depths (i.e. different values of m ) by exploiting the modified protograph extrinsic information transfer (PEXIT) algorithm. Furthermore, based on the PEXIT analysis and using Gaussian approximation, the authors derive the bit‐error‐rate (BER) expressions for the error‐free (EF) relaying protocol and decode‐and‐forward (DF) relaying protocol. The authors finally compare the threshold with the theoretical BER and the simulated BER results of the protograph codes. It reveals that the performance of DF protocol is approximately the same as that of EF protocol. Moreover, the theoretical BER expressions, which are shown to be reasonably consistent with the decoding thresholds and the simulated BERs, are able to evaluate the system performance and predict the decoding threshold with lower complexity as compared with the modified PEXIT algorithm. As a result, this work can facilitate the design of the protograph codes for the wireless communication systems.