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Accurate Localization Under Correlated Errors for Underwater Acoustic Sensor Networks

机译:水下声传感器网络在相关误差下的精确定位

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摘要

Localization is an indispensable part for most underwater wireless sensor networks (UWSNs). In these networks, acoustic ranging signals are typically used. Because of the depth dependent sound speed, acoustic ray bends in water. This presents a unique problem making conventional localization algorithms assuming straight line distances between target and anchor nodes inaccurate. In this paper, authors present a Maximum Likelihood estimation scheme for accurate location estimation in UWSNs where there is correlation of range measurement errors. The method takes into account ray bending by making use of ray tracing, with sound speed profile as input. The performance of the scheme was studied by means of Monte-Carlo simulation and the results are reported. The Cramer-Rao lower bound of the scheme is also derived and reported.
机译:本地化是大多数水下无线传感器网络(UWSN)必不可少的部分。在这些网络中,通常使用声学测距信号。由于依赖于深度的声速,声波会在水中弯曲。这就提出了一个独特的问题,即假设目标节点和锚节点之间的直线距离不准确,使得传统的定位算法成为不可能。在本文中,作者提出了一种最大似然估计方案,用于在距离测量误差相关的UWSN中进行精确的位置估计。该方法通过以声速曲线作为输入,通过使用射线跟踪来考虑射线弯曲。通过蒙特卡罗仿真研究了该方案的性能,并报告了结果。还推导并报告了该方案的Cramer-Rao下界。

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