A graph localization approach to assist a diver-in-distress

R. Diamant, Roberto Francescon, M. Zorzi
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引用次数: 5

Abstract

In this paper, we focus on the problem of locating a diver-in-distress using graph localization tools. Without GPS reception while being submerged, a diver cannot report on his location and upon distress can only rely on help from fellow divers by sending periodic SOS messages using underwater acoustic communication. In areas where many obstacles exist like harbors or shallow reefs, these SOS messages may not reach all the divers in place, and thus localization through triangulation is not guaranteed. Instead, we gather information of the propagation delay between the divers and use graph localization tools to allow a distributed evaluation of the location of the SOS source by an assisting diver. Considering the need to fastly propagate the SOS information, we flood the SOS packet while piggybacking propagation delay information across the divers' network. To combat the expected packet collisions, we evaluate the propagation delays by identifying the times collisions occur. When the assisting diver forms the graph of the propagation delays between the divers, he is able to estimate the location of the SOS source relative to his own using only a single anchor position. Numerical results as well as a proof-of-concept test in a water tank show a relative localization accuracy on the order of a few tens of meters, which is beneficial for quickly locate the diver-in-distress.
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一种帮助遇险潜水员的图形定位方法
本文主要研究了利用图定位工具定位遇险潜水员的问题。在水下没有GPS接收,潜水员无法报告自己的位置,遇险时只能依靠其他潜水员的帮助,通过使用水声通信发送定期的SOS信息。在港口或浅礁等障碍物较多的区域,这些SOS信息可能无法到达所有潜水员,因此无法保证通过三角定位进行定位。相反,我们收集潜水员之间传播延迟的信息,并使用图形定位工具允许辅助潜水员对SOS源的位置进行分布式评估。考虑到快速传播SOS信息的需要,我们在淹没SOS数据包的同时,在潜水员的网络中承载传播延迟信息。为了对抗预期的数据包冲突,我们通过识别冲突发生的时间来评估传播延迟。当辅助潜水员形成潜水员之间传播延迟的图表时,他能够仅使用单个锚位来估计相对于他自己的SOS源的位置。数值结果和水箱的概念验证试验表明,相对定位精度在几十米左右,有利于快速定位遇险潜水员。
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Anchorless underwater acoustic localization Comparison of ROS-based visual SLAM methods in homogeneous indoor environment Development of a simulation tool for collaborative navigation systems Vehicle indoor positioning: A survey A graph localization approach to assist a diver-in-distress
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