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Modeling the Behavior of an Underwater Acoustic Relative Positioning System Based on Complementary Set of Sequences

机译:基于序列互补集的水下声相对定位系统的行为建模

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摘要

The great variability usually found in underwater media makes modeling a challenging task, but helpful for better understanding or predicting the performance of future deployed systems. In this work, an underwater acoustic propagation model is presented. This model obtains the multipath structure by means of the ray tracing technique. Using this model, the behavior of a relative positioning system is presented. One of the main advantages of relative positioning systems is that only the distances between all the buoys are needed to obtain their positions. In order to obtain the distances, the propagation times of acoustic signals coded by Complementary Set of Sequences (CSS) are used. In this case, the arrival instants are obtained by means of correlation processes. The distances are then used to obtain the position of the buoys by means of the Multidimensional Scaling Technique (MDS). As an early example of an application using this relative positioning system, a tracking of the position of the buoys at different times is performed. With this tracking, the surface current of a particular region could be studied. The performance of the system is evaluated in terms of the distance from the real position to the estimated one.
机译:通常在水下介质中发现的巨大可变性使建模成为一项艰巨的任务,但有助于更好地理解或预测未来部署的系统的性能。在这项工作中,提出了水下声传播模型。该模型通过光线跟踪技术获得多径结构。使用该模型,提出了相对定位系统的行为。相对定位系统的主要优点之一是仅需要所有浮标之间的距离即可获得它们的位置。为了获得距离,使用了由序列互补集(CSS)编码的声学信号的传播时间。在这种情况下,通过相关过程获得到达时刻。然后通过多维比例缩放技术(MDS)将距离用于获得浮标的位置。作为使用此相对定位系统的应用程序的早期示例,将对浮标在不同时间的位置进行跟踪。通过这种跟踪,可以研究特定区域的表面电流。根据从实际位置到估计位置的距离来评估系统的性能。

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