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Timestamping of IEEE 802.15.4a CSS Signals for Wireless Ranging and Time Synchronization

机译:IEEE 802.15.4a CSS信号的时间戳记,用于无线测距和时间同步

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Accurate positioning and distributed time synchronization for short-range personal area networks (PAN) are expected to boost the impact of mobile wireless systems in a variety of applications. At the moment, wireless ranging and time synchronization are often addressed independently. The two main underlying reasons are: 1) the different accuracy requirements for time-of-arrival measurements and local clock correction and 2) the intrinsic difficulty to timestamp the received radio frames with uncertainty lower than some nanoseconds due to the joint effect of clock resolution, wideband noise, clock frequency offsets, and multipath propagation. Of course, if the influence of such phenomena were minimized, time synchronization could benefit from accurate one-way ranging and vice versa. One of the most recent and promising communication schemes to reach this goal is chirp spread spectrum (CSS) modulation. Indeed, this is also one of the alternative physical (PHY) layers for PANs recommended in the amendment IEEE 802.15.4a-2007, recently included in the standard IEEE 802.15.4–2011. In this paper, the features of IEEE 802.15.4a CSS signals for low-level timestamping are analyzed both theoretically and through simulations under the effect of various uncertainty contributions. Accordingly, an effective solution for frame timestamping at the symbol level is proposed. Some experimental results based on a software defined radio implementation of the IEEE 802.15.4a PHY layer confirm that CSS can be successfully adopted both for time synchronization and ranging.
机译:预计短距离个人区域网(PAN)的精确定位和分布式时间同步将增强移动无线系统在各种应用中的影响。目前,无线测距和时间同步通常是独立解决的。两个主要的根本原因是:1)到达时间测量和本地时钟校正的精度要求不同; 2)由于时钟分辨率的共同影响,难以对接收到的无线电帧进行时间戳的固有困难,不确定性低于几纳秒。 ,宽带噪声,时钟频率偏移和多径传播。当然,如果将这种现象的影响降到最低,则时间同步可以受益于准确的单向测距,反之亦然。达到此目标的最新且有希望的通信方案之一是线性调频扩频(CSS)调制。实际上,这也是IEEE 802.15.4a-2007修正案(最近包含在标准IEEE 802.15.4-2011中)推荐的PAN的替代物理(PHY)层之一。本文在各种不确定性影响的影响下,从理论上和通过仿真分析了IEEE 802.15.4a CSS信号用于低级时间戳的特性。因此,提出了一种用于符号级的帧时间戳的有效解决方案。基于IEEE 802.15.4a PHY层的软件定义无线电实现的一些实验结果证实,CSS可以成功地用于时间同步和测距。

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