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GNSS Time Synchronization in Vehicular Ad-Hoc Networks: Benefits and Feasibility

机译:车载Ad-Hoc网络中的GNSS时间同步:好处和可行性

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Time synchronization is critical for the operation of distributed systems in networked environments. It is also demanded in vehicular ad-hoc networks (VANETs), which, as a special type of wireless networks, are becoming increasingly important for emerging cooperative intelligent transport systems. Global navigation satellite system (GNSS) is a proven technology to provide precise timing information in many distributed systems. It is well recognized to be the primary means for vehicle positioning and velocity determination in VANETs. However, GNSS-based time synchronization is not well understood for its role in the coordination of various tasks in VANETs. To address this issue, this paper examines the requirements, potential benefits, and feasibility of GNSS time synchronization in VANETs. The availability of GNSS time synchronization is characterized by almost 100% in our experiments in high-rise urban streets, where the availability of GNSS positioning solutions is only 80%. Experiments are also conducted to test the accuracy of time synchronization with 1-PPS signals output from consumer-grade GNSS receivers. They have shown 30-ns synchronization accuracy between two receivers of different models. All these experimental results demonstrate the feasibility of GNSS time synchronization for stringent VANET applications.
机译:时间同步对于网络环境中分布式系统的运行至关重要。车载自组织网络(VANET)也需要它,作为一种特殊类型的无线网络,对于新兴的协作式智能运输系统而言,它变得越来越重要。全球导航卫星系统(GNSS)是一种经过验证的技术,可以在许多分布式系统中提供精确的定时信息。众所周知,它是VANET中用于车辆定位和速度确定的主要手段。但是,基于GNSS的时间同步在VANET中协调各种任务中的作用尚不为人所知。为了解决此问题,本文研究了VANET中GNSS时间同步的要求,潜在好处和可行性。在我们的高层城市街道实验中,GNSS时间同步的可用性几乎是100%,而GNSS定位解决方案的可用性仅为80%。还进行了实验,以测试从消费级GNSS接收器输出的1-PPS信号的时间同步的准确性。他们显示了不同型号的两个接收机之间的30 ns同步精度。所有这些实验结果证明了GNSS时间同步在严格的VANET应用中的可行性。

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