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A Novel Approach for Underwater Vehicle Localization and Communication Based on Laser Reflection

机译:基于激光反射的水下航行器定位与通信新方法

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摘要

This study presents a device for tracking, locating and communicating underwater vehicles as they work near the seabed. The system includes a base station placed on the seabed and a reflective module mounted on a hybrid underwater profiler (HUP). The base station localizes and communicates with the HUP working near the seabed based on laser reflections of corner cube retroreflectors. A tracking method based on the particle filter algorithm is then presented. Localization is performed using the least-squares method with refraction compensation. Lost tracking links are retrieved via a recovering approach based on the interpolation method. Finally, a communication method using a modulating retroreflector installed on the reflection module is proposed. The proposed tracking, localization, and communication approach provides higher localization accuracy with lower power consumption at low cost compared with the commonly used acoustic methods. The effectiveness of the proposed approach was clarified via tracking, localization, and communication experiments.
机译:这项研究提出了一种用于跟踪,定位和交流水下车辆(在水下作业在海底附近工作)的设备。该系统包括一个放置在海床上的基站和一个安装在混合水下轮廓仪(HUP)上的反射模块。基站根据角锥后向反射器的激光反射定位并与在海床附近工作的HUP进行通信。提出了一种基于粒子滤波算法的跟踪方法。使用具有折射补偿的最小二乘法进行定位。丢失的跟踪链接通过基于插值方法的恢复方法进行检索。最后,提出了一种使用安装在反射模块上的调制后向反射镜的通信方法。与常用的声学方法相比,所提出的跟踪,定位和通信方法以较低的成本提供了更高的定位精度和更低的功耗。通过跟踪,本地化和交流实验,阐明了该方法的有效性。

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