首页> 外文会议>IEEE International Conference on Advanced Intelligent Mechatronics >Reducing elevation angle errors of long-range deep-sea acoustic localization by ray tracing and depth measurements
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Reducing elevation angle errors of long-range deep-sea acoustic localization by ray tracing and depth measurements

机译:通过射线追踪和深度测量减少远距离深海声定位的仰角误差

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For deep-sea (robotic) applications, accurate acoustic localization is required, e.g. using USBL devices. Internal calculations for these devices usually assume a constant sound velocity within the deployment area ignoring refraction effects due to a depth-dependent sound velocity profile. This work presents the results of long-range deep-sea (5000m) USBL localization tests to estimate absolute positioning accuracy. The experiments lead to a correction approach by incorporating both the depth of acoustic participants as well as the full sound velocity profile. For bigger horizontal distances (> 800m), this approach can largely reduce the resulting (systematic) elevation angle error.
机译:对于深海(机器人)应用,需要精确的声学定位,例如使用USBL设备。这些设备的内部计算通常假设部署区域内的声速恒定,而忽略了与深度有关的声速剖面所引起的折射效应。这项工作介绍了远程深海(5000m)USBL本地化测试的结果,以估计绝对定位精度。通过结合声学参与者的深度以及完整的声速剖面,实验导致了一种校正方法。对于更大的水平距离(> 800m),此方法可以大大减少所产生的(系统的)仰角误差。

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