An Iterative Decoding Scheme for CPM-QC-LDPC Codes Based on Matrix Transform
Author:
Affiliation:
1. College of Electronic Science and Engineering, National University of Defense and Technology
2. College of Computer, National University of Defense and Technology
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Electrical and Electronic Engineering,Computer Networks and Communications,Software
Link
https://www.jstage.jst.go.jp/article/transcom/E102.B/3/E102.B_2018EBP3177/_pdf
Reference27 articles.
1. [1] R.G. Gallager, “Low density parity-check codes,” IEEE Trans. Inf. Theory, vol.8, no.1, pp.21-28, 1962. 10.1109/tit.1962.1057683
2. [2] H. Xu, “Bilayer lengthened QC-LDPC codes design for relay channel,” IEICE Trans. Commun., vol.E97-B, no.7, pp.1365-1374, July 2014. 10.1587/transcom.e97.b.1365
3. [3] Y. Yu, S. Handa, F. Sasamori, and O. Takyu, “Adaptive iterative decoding of finite-length differentially encoded LDPC coded systems with multiple-symbol differential detection,” IEICE Trans. Commun., vol.E96-B, no.3, pp.847-858, March 2013. 10.1587/transcom.e96.b.847
4. [4] N. Kamiya, Y. Hashimoto, and M. Shigihara, “Design and implementation of long high-rate QC-LDPC codes and its applications to optical transmission systems,” IEICE Trans. Commun., vol.E96-B, no.6, pp.1402-1411, June 2013. 10.1587/transcom.e96.b.1402
5. [5] Y. Nakamura, Y. Okamoto, H. Osawa, H. Aoi, and H. Muraoka, “Performance evaluation of non-binary LDPC coding and iterative decoding system for BPM R/W channel with write-errors,” IEICE Trans. Commun., vol.E96-C, no.12, pp.1497-1503, Dec. 2013. 10.1587/transele.e96.c.1497
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