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An Empirical Study on Ad Hoc Performance of DSRC and Wi-Fi Vehicular Communications

机译:DSRC和Wi-Fi车载通信的Ad hoc性能的实证研究

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The primary motivation for developing vehicular safety applications is to provide information and assistance required to avoid collisions. Such applications depend on performance of vehicular communications which have critical requirements for various operating scenarios. However, there is still a lack of practical performance measurement data in the open literature that can be used to design robust and reliable applications for vehicle safety. This paper provides an overview of the current standards for vehicular communications and requirements for vehicular applications and analyzes ad hoc performance of commercial off-the-shelf DSRC and Wi-Fi radios in real vehicular environments. Also, it identifies important effects of messages size, message frequency, weather condition, and vehicle mobility on vehicular communications. For example, rainy weather significantly diminishes the communication range and vehicle mobility causes temporal variations in communication throughput. With a better comprehensive understanding of these effects on performance and reliability, quality of vehicular applications can be significantly improved.
机译:开发车辆安全应用程序的主要动机是提供避免碰撞所需的信息和帮助。这样的应用取决于对各种操作场景具有关键要求的车辆通信的性能。然而,在公开文献中仍然缺乏可用于设计鲁棒且可靠的车辆安全应用的实用性能测量数据。本文概述了当前的车辆通信标准和车辆应用要求,并分析了实际车辆环境中商用现货DSRC和Wi-Fi无线电的即席性能。此外,它还确定了消息大小,消息频率,天气状况和车辆移动性对车辆通信的重要影响。例如,阴雨天气会大大缩小通信范围,而车辆的流动性会导致通信吞吐量随时间变化。通过更好地全面了解这些对性能和可靠性的影响,可以显着提高车辆应用的质量。

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