DocumentCode
566465
Title
Design and Application of dynamic coding in shallow water acoustic communications
Author
Chen, Yougan ; Xu, Xiaomei ; Zhang, Lan ; Zou, Zheguang
Author_Institution
Key Lab. of Underwater Acoust. Commun. & Marine Inf. Technol., Xiamen Univ., Xiamen, China
fYear
2012
fDate
21-24 May 2012
Firstpage
1
Lastpage
6
Abstract
In fast temporal variations shallow water acoustic (SWA) channels, flexible channel coding rate should be desired in the design of practical error control SWA communication system. Herein, as one of the dynamic coding schemes, rate compatible LDPC (RC-LDPC) codes combing OFDM technique are proposed to improve the system reliability for SWA communications. Based on the automatic repeat request (ARQ) mechanism, the proposed SWA OFDM system consists of three important preprocessing: channel state information (CSI) estimator, signal-to-noise ratio (SNR) estimator and RC-LDPC pattern. The design of RC-LDPC codes and SWA channel profile are described. A look-up table (LUT) of RC-LDPC performances for ARQ-SWA system is built via statistical simulation test. For the proposed scheme, we define and derive the sensitivity to channel time variations and the effects of different performance target BER threshold, which are further confirmed via numerical results. It is shown that RC-LDPC codes have good performances with wide range of rates in SWA channels. Finally, coding rate distributions of RC-LDPC codes in different SNR at BER below 10-4 for Xiamen harbor SWA channel are investigated.
Keywords
automatic repeat request; channel coding; error statistics; parity check codes; telecommunication channels; telecommunication network reliability; underwater acoustic communication; ARQ-SWA system; CSI estimator; LUT; OFDM technique; RC-LDPC codes; RC-LDPC pattern; SNR estimator; SWA channels; SWA communication system; Xiamen harbor SWA channel; channel state information; coding rate distributions; dynamic coding; fast temporal variations; flexible channel coding rate; look-up table; practical error control; rate compatible LDPC codes; shallow water acoustic channels; shallow water acoustic communications; signal-to-noise ratio; statistical simulation test; system reliability; target BER threshold; Bit error rate; Channel coding; Communication systems; Parity check codes; Signal to noise ratio; Table lookup; RC-LDPC codes; Rate compatible; shallow water acoustic channel; underwater acoustic communications;
fLanguage
English
Publisher
ieee
Conference_Titel
OCEANS, 2012 - Yeosu
Conference_Location
Yeosu
Print_ISBN
978-1-4577-2089-5
Type
conf
DOI
10.1109/OCEANS-Yeosu.2012.6263386
Filename
6263386
Link To Document