无锚水声定位

Elizaveta Dubrovinskaya, R. Diamant, P. Casari
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引用次数: 7

摘要

我们考虑了在不使用锚节点或接收阵列的情况下估计水下源发射声信号轨迹的问题。许多应用都需要这种方法,包括定位声源,如海洋哺乳动物或水下航行器,因为用多个接收器覆盖大面积的成本太高。由于在这种情况下不可能进行多方位定位,因此我们通过结合水深信息来进行定位。具体来说,我们假设接收器保留了影响信号传播的环境参数的知识,并且该区域的水深测量足够多样化,可以诱导不同源位置的可区分信道脉冲响应。我们的方法将从接收到的声信号中获得的通道估计与通过声射线追踪模型预先计算的通道响应数据库进行比较。然后将结果的可能节点位置集组织成网格形式,通过类似于Viterbi算法的路径跟踪方法获得源轨迹的最终估计。我们的研究结果表明,只要接收器具有足够准确和最新的环境信息,该方法可以以非常小的误差估计节点位置和路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anchorless underwater acoustic localization
We consider the problem of estimating the trajectory of a submerged source emitting acoustic signals without using any anchor nodes or receiving array. This approach is required for several applications, including the localization of acoustic sources such as marine mammals or underwater vehicles, for which the cost of covering a broad area with multiple receivers would be excessively high. Since multi-lateration is impossible in this scenario, we perform localization by incorporating bathymetry information. Specifically, we assume that the receiver retains knowledge of the environmental parameters that affect the signal propagation, and that the bathymetry of the area is sufficiently diverse to induce distinguishable channel impulse responses for different source locations. Our method compares the channel estimates obtained from the received acoustic signals against a database of channel responses, pre-computed through an acoustic ray tracing model. The set of possible node locations that result are then organized in trellis form to obtain a final estimate of the source's trajectory via a path tracking method similar to the Viterbi algorithm. Our results show that the proposed approach can estimate node locations and paths with very small error, provided that the receiver has sufficiently accurate and up-to- date environmental information.
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