声学
传输(电信)
信号(编程语言)
水声通信
水下
计算机科学
断层摄影术
波束赋形
遥感
地质学
物理
电信
光学
海洋学
程序设计语言
作者
Shijie Xu,Fengyuan Yu,Guangming Li,Haocai Huang
标识
DOI:10.1109/tim.2024.3403193
摘要
Ocean current measurement via underwater acoustic tomography network communication is an advanced technology. The mirror-type coastal acoustic tomography (MCAT) technology is proposed to measure the current field with multi-station signal transmission. Here, the travel time is solved by mirror reciprocal transmission between station pairs based on three times communications. A four-station MCAT network experiment was initially performed to map the flow field variations near Liuheng island, ZhouShan, China. The multi-peak identification of the mirror transmitted signal is discussed and arrival peaks are matched via the ray simulation. And the hedging and mixing progresses of the two-dimensional current are reconstructed using the stream function inverse method. The mirror inversion results verified to be close to original results, but still exist the difference caused by instantaneous flow at different transmission timing. Based on mirror transmission function, MCAT observation could obtain deep-sea environment data from distant offshore sound stations in real time. In general, this technology obtains real-time observation and measurement data by signal communication during the observation process. Compared to recycling or in-situ observation, we believe such multi-station MCAT network provide long series monitoring of some dynamic processes like internal waves, mesoscale eddies, thermocline variations and so on.
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