Study of the Performance of DSSS UAC System Depending on the System Bandwidth and the Spreading Sequence - Publication - Bridge of Knowledge

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Study of the Performance of DSSS UAC System Depending on the System Bandwidth and the Spreading Sequence

Abstract

A signal transmitted in an Underwater Acoustic Communication (UAC) system operating in a shallow-water channel suffers from strong time dispersion due to multipath propagation. This causes the Inter-Symbol Interference (ISI) observed in the received signal, which significantly limits the communication system’s reliability and transmission rate. In such propagation conditions, the Direct-Sequence Spread Spectrum (DSSS) method is one of the solutions that make reliable data transmission possible. In systems with one-to-one communication, it ensures communication with a satisfactory Bit Error Rate (BER). Additionally, it makes it possible to implement the Code-Division Multiple Access (CDMA) protocol in underwater acoustic networks. This paper presents the results of simulation and experimental communication tests on a DSSS-based UAC system using three types of spreading sequence, namely m-sequences, Kasami codes and Gold codes, and occupying different bandwidths from 1 kHz to 8 kHz around a carrier frequency equal to 30 kHz. The UAC channel was simulated by impulse responses calculated by the virtual sources method and the UAC chanel models available in the Watermark simulator. The experimental tests were conducted in a model pool. Based on the obtained results, a transmission rate was estimated, which is possible to achieve in strong multipath propagation conditions, assuming reliability expressed as BER less than 0.001.

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Category:
Articles
Type:
artykuły w czasopismach
Published in:
SENSORS no. 21,
ISSN: 1424-8220
Language:
English
Publication year:
2021
Bibliographic description:
Kochańska I., Salamon R., Schmidt J., Schmidt A.: Study of the Performance of DSSS UAC System Depending on the System Bandwidth and the Spreading Sequence// SENSORS -Vol. 21,iss. 7 (2021), s.2484-
DOI:
Digital Object Identifier (open in new tab) 10.3390/s21072484
Verified by:
Gdańsk University of Technology

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