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Bottom parameter extraction from long range reverberation measurements

机译:远程混响测量的底部参数提取

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From 1996 through 2000 the author participated with the SACLANT Undersea Research Centre in four Rapid Environmental Assessment (REA) trials, including experiments for bottom reverberation. SUS charges were used as sources. The receivers were horizontal arrays (four apertures) spanning a wide frequency range. Sets of nearly monostatic recordings were analyzed in frequency bands from 80 to 4000 Hz. Previous results by the author, [Berlin ASA meeting, 1999] showed polar plots of the beam time series superimposed on bathymetric charts, revealing a number of scattering features not on the charts and that directional reverberation measurements are a useful remote-sensing tool. A manual procedure was used in the first 3 sea trials to obtain bottom parameter estimates that could reproduce the reverberation decay for at-sea results. Recently this inversion scheme has been automated using a constrained simulated annealing (SA) algorithm giving more formal inversion results. In May of 2000 a Scientific REA experiment was conducted with SACLANTCEN, ARL/PSU, DREA and NRL near the Malta Plateau. Reverberation data from 100 Hz-4000 Hz was obtained using SUS. The horizontal array data are compared with the Generic Sonar Model (GSM) predictions for both the manual and automated inverse schemes. Results show a definite improvement using the automated technique.
机译:从1996年到2000年,提交人参加了四次快速环境评估(REA)试验中的Saclant Undersea研究中心,包括底部混响的实验。 SUS充电用作来源。接收器是跨越宽频范围的水平阵列(四个孔径)。在80至4000Hz的频段中分析了几乎单色录音。上一篇文章的结果,[柏林ASA会议,1999]显示了叠加在沐浴浴图上的光束时间序列的极性图,揭示了若干散射功能,而定向混响测量是一种有用的遥感工具。在前3个海洋试验中使用了手动程序,以获得底部参数估计,可以再现海上衰减的混响衰变。最近,这种反演方案使用受约束的模拟退火(SA)算法进行了自动化,提供了更正式的反转结果。 2000年5月,科学REA实验是用Saclantcen,Arl / PSU,DREA和NRL进行的,在马耳他高原附近进行。使用SUS获得来自100 Hz-4000Hz的混响数据。将水平阵列数据与手动和自动逆方案的通用声纳模型(GSM)预测进行比较。结果显示了使用自动化技术的明确改进。

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