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Article

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Title

A New Direct-Sequence Spread Spectrum Signal Detection Method for Underwater Acoustic Communications in Shallow-Water Channel

Authors

Year of publication

2021

Published in

Vibrations in Physical Systems

Journal year: 2021 | Journal volume: vol. 32 | Journal number: no. 1

Article type

scientific article

Publication language

english

Keywords
EN
  • underwater acoustic communications
  • UAC
  • direct-sequence spread spectrum
  • DSSS
Abstract

EN Direct-Sequence Spread Spectrum (DSSS) is one of the modulation and coding techniques used in Underwater Acoustic Communication (UAC) systems for reliable data transmision even at low signal levels. However, in a shallow water channel, there is a strong multipath propagation which causes a phase fluctuation of the received signal, affecting the performance of the spread-spectrum system. The article presents a differential method for DSSS signal detection. It is based on the calculation of the correlation coefficient of adjacent segments of signal at the output of filter matched to the spreading sequence used in the transmitter. A positive value of the correlation coefficient means that a given modulation symbol carries the same information bit as the previous one; a negative value means that the opposite bit has been transmitted. The reliability of the proposed method has been compared to classical method of DSSS signal detection, which consists in detecting the information directly from the signal at the output of the matched filter. Simulation and measurement tests of underwater acoustic communications in strong multipath propagation conditions have shown that the proposed method allows obtaining lower values of the DSSS transmission Bit Error Rate (BER) than the classical detection technique while maintaining the same data transmission rate.

Pages (from - to)

2021106-1 - 2021106-8

DOI

10.21008/j.0860-6897.2021.1.06

URL

https://vibsys.put.poznan.pl/_journal/2021-32-1/articles/vps_2021106.pdf

Comments

article number: 2021106

License type

CC BY (attribution alone)

Full text of article

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public

Ministry points / journal

70

Ministry points / journal in years 2017-2021

70

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