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Underwater acoustic communication performance in reverberant water tank

Title
Underwater acoustic communication performance in reverberant water tank
Author
최지웅
Keywords
Reverberant environment; Maximum excess delay; Root Mean Squared (RMS) delay spread; Coherence bandwidth; Symbol interval to Delay spread Ratio in reverberant environment (SDRrev)
Issue Date
2022-03
Publisher
ACOUSTICAL SOC KOREA
Citation
JOURNAL OF THE ACOUSTICAL SOCIETY OF KOREA, v. 41, NO. 2, Page. 184-191
Abstract
Underwater acoustic wave in shallow water is propagated through multipath that has a large delay spread causing Inter-Symbol Interference (ISI) and these characteristics deteriorate the performance in the communication system. In order to analyze the communication performance and investigate the correlation with multipath delay spread in a reverberant environment, an underwater acoustic communication experiment using Binary Phase-Shift Keying (BPSK) signals with symbol rates from 100 sym/s to 8000 sym/s was conducted in a 5 x 5 x 5 m(3) water tank. The acoustic channels in a well-controlled tank environment had the characteristics of dense multipath delay spread due to multiple reflections from the interfaces and walls within the tank and showed the maximum excess delay of 40 ms or less, and the Root Mean Squared (RMS) delay spread of 8 ms or less. In this paper, the performances of Bit Error Rate (BER) and output Signal-to-Noise Ratio (SNR) were analyzed using four types of communication demodulation techniques. And the parameter, Symbol interval to Delay spread Ratio in reverberant environment (SDRrev), which is the ratio of symbol interval to RMS delay spread in the reverberant environment is defined. Finally, the SDRrev was compared to the BER and the output SNR. The results present the reference symbol rate in which high communication performance can be guaranteed.
URI
http://koreascience.or.kr/article/JAKO202211154102333.pagehttps://repository.hanyang.ac.kr/handle/20.500.11754/185229
ISSN
1225-4428;2287-3775
DOI
10.7776/ASK.2022.41.2.184
Appears in Collections:
COLLEGE OF SCIENCE AND CONVERGENCE TECHNOLOGY[E](과학기술융합대학) > MARINE SCIENCE AND CONVERGENCE ENGINEERING(해양융합공학과) > Articles
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