High Precision Synchronization between Commercial WiFi-ICs and External Device

Alexey Romanov, F. Gringoli, Sikora Axel
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引用次数: 3

Abstract

Wireless synchronization of industrial controllers is a challenging task in environments where wired solutions are not practical. The best solutions proposed so far to solve this problem require pretty expensive and highly specialized FPGA-based devices. With this work we counter the trend by introducing a straightforward approach to synchronize a fairly cheap IEEE 802.11 integrated wireless chip (IWC) with external devices. More specifically we demonstrate how we can reprogram the software running in the 802.11 IWC of the Raspberry Pi 3B and transform the receiver input potential of the wireless transceiver into a triggering signal for an external inexpensive FPGA. Experimental results show a mean-square synchronization error of less than 496 ns, while the absolute synchronization error does not exceed 6 μs. The jitter of the output signal that we obtain after synchronizing the clock of the external device did not exceed 5.2 μs throughout the whole measurement campaign. Even though we do not score new records in term of accuracy, we do in terms of complexity, cost, and availability of the required components: all these factors make the proposed technique a very promising of the deployment of large-scale low-cost automation solutions.
商用wifi与外部设备高精度同步
在有线解决方案不实用的环境中,工业控制器的无线同步是一项具有挑战性的任务。到目前为止,解决这个问题的最佳解决方案需要非常昂贵和高度专业化的基于fpga的设备。通过这项工作,我们通过引入一种简单的方法来同步相当便宜的IEEE 802.11集成无线芯片(IWC)与外部设备来对抗这一趋势。更具体地说,我们演示了如何重新编程在树莓派3B的802.11 IWC中运行的软件,并将无线收发器的接收器输入电位转换为外部廉价FPGA的触发信号。实验结果表明,同步误差均小于496 ns,绝对同步误差不超过6 μs。在整个测量过程中,同步外部器件时钟后得到的输出信号抖动不超过5.2 μs。尽管我们没有在准确性方面取得新的记录,但我们在复杂性、成本和所需组件的可用性方面取得了新的记录:所有这些因素使所提出的技术成为大规模低成本自动化解决方案部署的一个非常有希望的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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