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Emitter localisation from reception timestamps in asynchronous networks

机译:异步网络中接收时间戳的发射器本地化

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摘要

We address the problem of localising a mobile terminal ("blind" node) in unknown position from a set of "anchor" nodes in known positions. The proposed method does not require any form of node synchronisation nor measurement (or control) of the transmission times, which is difficult or anyway costly to achieve in practice. It relies exclusively on reception timestamps collected by the anchor nodes, according to their local clocks, that overhear packets transmitted by the blind node and by (at least one) other transmitting node(s) in known position, e.g., other anchors. The clock differences between the nodes are not eliminated ex ante through clock synchronisation, as in traditional ToA and TDoA methods. Instead, they are counteracted ex post, during the data processing stage, leveraging the data redundancy that is intrinsic to the multiple reception of the same packet by different (anchor) nodes. We validate the proposed method in different experimental settings, indoor and outdoor, using exclusively low-cost Commercial-Off-The-Shelf WiFi devices, achieving sub-metre accuracy in full line-of-sight conditions and metre-level accuracy in mild non-line-of-sight environment. The proposed method does not require that the blind node participate actively to the localisation procedure and can use "opportunistically" any legacy signal or packet available over-the-air for communication purposes. Considering the very minimal requirement on the system basically, only that anchors in known positions are able to collect and share reception timestamps the proposed approach can enable practical adoption of opportunistic and/or cooperative localisation on top of existing radio communication systems. (C) 2015 Published by Elsevier B.V.
机译:我们解决了将移动终端(“盲”节点)从已知位置的一组“锚”节点中定位到未知位置的问题。所提出的方法不需要任何形式的节点同步或传输时间的测量(或控制),这在实践中是困难的或总之是昂贵的。它仅依赖于锚节点根据它们的本地时钟收集的接收时间戳,该时间戳会监听由盲节点以及在已知位置的(至少一个)其他发送节点(例如,其他锚)发送的分组。像传统的ToA和TDoA方法一样,无法通过时钟同步事先消除节点之间的时钟差异。相反,它们是在数据处理阶段事后抵消的,它利用了不同(锚点)节点多次接收同一数据包所固有的数据冗余。我们使用专用的低成本商用现货WiFi设备在室内和室外的不同实验环境中验证了该方法,在全视线条件下达到了亚米级精度,而在轻度非视距条件下达到了米级精度视线环境。所提出的方法不需要盲节点积极地参与定位过程,并且可以“机会”地使用空中可用的任何传统信号或分组用于通信目的。从根本上考虑对系统的极少要求,只有已知位置的锚点能够收集和共享接收时间戳,所提出的方法才能在现有无线电通信系统之上实际采用机会和/或协作定位。 (C)2015由Elsevier B.V.发布

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