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Multipath-based passive source range localization with a single hydrophone in deep ocean

机译:基于多径的被动源范围定位,深海中的单个水听器

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This paper presents a single-hydrophone based method for source range localization from information contained in the multipath propagation in the reliable acoustic path (RAP) environment. The time delays between the direct (D) and the surface-reflected (SR) arrivals are obtained from the autocorrelation of the received signal and are compared with the D-SR time delays predicted by the acoustic model. Because of the high bottom-reflection loss and uncertainty of bottom properties, only the D-SR time delays are robust information for source localization. If the source depth is assumed known, the D-SR time delays versus source range can be predicted by the acoustic model. Reliable source track is then given through a family of measurements of the estimated source range during a period of time. Experimental data from a sea trial in South China Sea show that a sound source emitting 700???1500 Hz LFM sweeps could effectively be located within a range of 13km. The proposed method may be of advantage to source localization due to its simplicity.
机译:本文介绍了一种基于单独的基于源范围定位的方法,该信息来自可靠的声学路径(RAP)环境中的多径传播中所含的信息。直接(D)和表面反射(SR)到达之间的时间延迟是从接收信号的自相关而获得的,并且与由声学模型预测的D-SR时间延迟进行比较。由于高底部反射丢失和底部属性的不确定性,只有D-SR时间延迟是源本地化的强大信息。如果已知源深度,则可以通过声学模型预测D-SR时间延迟与源范围。然后通过在一段时间内通过估计的源范围的一系列测量来给予可靠的源极轨道。来自南海的海洋试验的实验数据表明,发射700的声源1500 Hz LFM扫描可以有效地位于13公里的范围内。所提出的方法可以有利于由于其简单性而源的局部化。

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