超宽带精确且与平台无关的飞行时间估计

Francois Despaux, K. Jaffrès-Runser, A. Bossche, T. Val
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引用次数: 14

摘要

超宽带(UWB)的新兴应用结合了中低速率通信和定位能力,使测距精度达到厘米级。对于采用超宽频无线电的定位系统,由于超宽频信号的高时间分辨率,基于时间的方案提供了非常好的精度。这些基于时间的定位系统依赖于测量信号在节点之间的传播时间,从而估计节点之间的距离。标准IEEE 802.15.4a-2007提出了用于测距的TWR和SDS-TWR基于时间的协议。然而,由于时钟偏差的影响,TWR的精度很差。SDS-TWR以增加消息交换次数为代价减轻了时钟倾斜错误。在这项工作中,我们提出了一种新的方法来准确估计UWB中的ToF,同时考虑到节点之间的时钟倾斜,同时最小化交换消息的数量。实验在我们的开源框架中进行,这使得基于UWB物理层的协议快速原型化成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Accurate and platform-agnostic time-of-flight estimation in ultra-wide band
Emerging applications of Ultra-Wide Band (UWB) combine low to medium rate communications with positioning capabilities allowing centimeter level accuracy in ranging. For positioning systems employing UWB radios, time-based schemes provide very good accuracy due to the high time resolution of UWB signals. These time-based positioning systems rely on measurements of travel times of signal between nodes allowing to estimate the distance between nodes. The standard IEEE 802.15.4a-2007 propose TWR and SDS-TWR time-based protocols for ranging purpose. However, the accuracy of TWR is quite poor due to the effects of clock skews. SDS-TWR mitigates the clock skew error at the expenses of the number of message exchanges, which is increased. In this work, we present a novel approach for accurately estimating the ToF in UWB taking into account the clock skew between nodes while minimising the number of exchanged messages. Experimentations were carried out in our Open Source Framework, which enables fast prototyping of protocols based on an UWB Physical Layer.
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