A waveform design method for cross-ice acoustic communication based on flexural wave

Dingyi Ma, Chao Sun, Jingwei Yin, Yuxiang Zhang

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

The establishment of a real-time Observation and Communication Network is one of the key topics in the study of the Arctic. In such a particular and harsh environment exhibiting ultra-low temperatures, sea-ice coverage, and geomagnetic polarity simultaneously, wireless communication technology connecting the ocean with the atmosphere with acoustic waves is effective and promising. Aiming at such, a waveform design method is proposed in this manuscript to countermeasure and make use of the dispersion nature of acoustic waves propagating in sea ice. Having considered the energy distribution among guided waves, the flexural wave is selected in this paper for discussion in particular. A temporal signal of the flexural wave is synthesized to take into account the distortion stemming from dispersion and propagation, it's then time-reversed and used as the excitation signal. Under the assumption of reciprocity of acoustic propagation in the ice channel, the energy of this signal is compressed progressively along the time axis during its propagation and repulsed at its predetermined destination. The waveform designing approach is verified through numerical simulation experiment using the Spectral Element Method (SPECFEM2D), the result of which shows that it improves not only the efficiency but also the stability and concealment of cross-ice acoustic communication.

源语言英语
主期刊名OCEANS 2023 - Limerick, OCEANS Limerick 2023
出版商Institute of Electrical and Electronics Engineers Inc.
ISBN(电子版)9798350332261
DOI
出版状态已出版 - 2023
活动2023 OCEANS Limerick, OCEANS Limerick 2023 - Limerick, 爱尔兰
期限: 5 6月 20238 6月 2023

出版系列

姓名OCEANS 2023 - Limerick, OCEANS Limerick 2023

会议

会议2023 OCEANS Limerick, OCEANS Limerick 2023
国家/地区爱尔兰
Limerick
时期5/06/238/06/23

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