DocumentCode :
2100507
Title :
Comparison of the performance of LDPC codes over different underwater acoustic channels
Author :
Xiaomei, Xu ; Yougan, Chen ; Lan, Zhang ; Wei, Feng
Author_Institution :
Key Lab. of Underwater Acoust. Commun. & Marine Inf. Technol., Xiamen Univ., Xiamen, China
fYear :
2010
fDate :
11-14 Nov. 2010
Firstpage :
155
Lastpage :
158
Abstract :
The fast temporal variations, long multipath delay spreads, and severe frequency-dependent attenuations of underwater acoustic communication channels are extremely complex that impedes underwater acoustic (UWA) data transmission. To alleviate this problem, channel coding is indispensable in UWA communication system to increase the reliability. In this paper, performances of LDPC codes with different parameters over different underwater acoustic communication channels are presented, which is to know how to adjust the encoding and decoding parameters according to different underwater acoustic channels. The results indicate that LDPC codes have a good performance of the estimated BER on the order of 10-4 -10-5 either in positive sound velocity gradient (PSVG) underwater channel or negative sound velocity gradient (NSVG) one, even invariable sound velocity gradient (ISVG) one. In addition, whatever the encoding or decoding parameters is adopted, performance of the LDPC codes over the NSVG underwater channel is the best, compared with PSVG one and ISVG one. Furthermore, in the desired performance of BER of 10-5, the encoding and decoding parameters according to the three different underwater channels specifications are summarized.
Keywords :
data communication; error statistics; multipath channels; parity check codes; underwater acoustic communication; BER; LDPC codes; frequency-dependent attenuations; multipath delay spreads; negative sound velocity gradient; positive sound velocity gradient; underwater acoustic communication channels; underwater acoustic data transmission; Decoding; Parity check codes; Reliability theory; BP algorithm; LDPC codes; sound velocity gradient; underwater acoustic channels;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communication Technology (ICCT), 2010 12th IEEE International Conference on
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-6868-3
Type :
conf
DOI :
10.1109/ICCT.2010.5689306
Filename :
5689306
Link To Document :
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