DocumentCode :
3591620
Title :
Time Frequency coding in underwater acoustic communication
Author :
Wang, Yu
Author_Institution :
Northwestern Polytech. Univ., Xi´´an, China
Volume :
4
fYear :
2003
Abstract :
Summary form only given. Due to the difficulties encountered in underwater acoustic communication channels, the most prominent of which is considered to be the multipath propagation. This paper proposes to use the Time-Frequency coding for underwater acoustic communication system in which there is serious multipath interference of transmitted signal. This paper is divided into three parts. The first part gives a brief overview of characteristics of UWA communication channels and presents communication channel modeling, which uses ray tracing for determining the multipath structure. The second part is devoted to communication system design, which uses different frequency sequence over different time slot being well known as two-dimensional coding. Finally, the third part summarizes the conclusions. The system based on this principle has good performance against multipath interference and can obtain a high data transmission rate. The computer simulation shows that successful signal transmission of 25 bit/s date rate, over 5 km distance and at 0 dB signal to noise ratio, can be achieved, the error coding probability is very low.
Keywords :
acoustic noise; acoustic wave interference; error statistics; geophysical signal processing; ray tracing; time-frequency analysis; underwater acoustic communication; underwater acoustic propagation; 25 B/s; communication channel modeling; communication system design; computer simulation; data transmission rate; error coding probability; frequency sequence; multipath interference; multipath propagation; multipath structure; noise ratio; ray tracing; time frequency coding; transmitted signal; two-dimensional coding; underwater acoustic communication channels; Acoustic propagation; Communication channels; Computer simulation; Data communication; Interference; Ray tracing; Signal to noise ratio; Time frequency analysis; Underwater acoustics; Underwater communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
OCEANS 2003. Proceedings
Print_ISBN :
0-933957-30-0
Type :
conf
DOI :
10.1109/OCEANS.2003.178155
Filename :
1282689
Link To Document :
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