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Detection and resolvability of pulsed acoustic signals through the South China Sea Basin a modeling analysis

机译:南海盆地脉冲声信号的探测与分辨能力建模分析

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摘要

Sponsored by the office of Naval Research (ONR), the Windy Islands Soliton Experiment (WISE) is designed to measure acoustic propagation and physical oceanography commencing April 2005-2006. As part of this experiment, two deep water moorings with acoustic transceivers (source-receiver combinations) will be placed in the South China Sea deep basin 160 km apart. These transceivers will transmit and receive phase-modulated signals (pulses after signal processing) over the year attempting to (1) capture multi-scale variability in transmission loss and (2) examine the progression of internal tides within the basin through tomographic inverse techniques. Acoustic arrival structure modeling was conducted to discern whether a detectable and resolvable signal was to be expected and for signal design. Using a stochastic inverse approach, the inversion was used to determine vertical structure, spatial resolution, and uncertainty associated with the tomographic mapping of the internal tide.
机译:由海军研究办公室(ONR)赞助的“风岛孤子实验(WISE)”旨在测量自2005年4月至2006年4月的声学传播和自然海洋学。作为该实验的一部分,两个带有声收发器(源-接收器组合)的深水系泊设备将被放置在相距160公里的南海深水盆地中。这些收发器将在一年内发送和接收相位调制信号(信号处理后的脉冲),以试图(1)捕获传输损耗的多尺度变化,以及(2)通过层析反演技术检查流域内部潮汐的变化。进行声学到达结构建模以辨别是否期望可检测和可分辨的信号以及信号设计。使用随机反演方法,该反演用于确定与内部潮汐的层析成像有关的垂直结构,空间分辨率和不确定性。

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    Schneck-Scott Adria R.;

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