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Implementation and Performance Evaluation for DSRC-Based Vehicular Communication System

机译:基于DSRC的车辆通信系统的实施与性能评估

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摘要

Traffic accidents and congestion are the most common on-road problems that might be anywhere and anytime. Recently, to deal with such problems, well-coordinated wireless communication system between vehicles, road side units (RSU), drones, etc., namely vehicle-to-everything (V2X) communication system, has been considered as a key technology enabling on-road human safety and convenience. One of the well-known building blocks of the V2X communication system is Wi-Fi based Dedicated Short Range Communication (DSRC) which performs stably, owing to a long year of study, simplicity and capability of distributed operation. In spite of promising opportunities brought by DSRC, its elaborate performance evaluation must be done under real-world scenarios, in advance to the actual use, since its performance is directly related to human and vehicle safety. In this context, this article presents field test results of DSRC-based V2X communication system we implemented. As a result of the line-of-sight (LoS) test, the distance represented by 90% or more of packet reception rate (PRR) was 720 meters at 5 dBm, and 1,035 meters at 11 dBm. In Non-LoS (NLOS) shadowing test, the distance represented by 90% or more of PRR was 175 meters at 5 dBm, and 520 meters at 11 dBm. And in NLoS intersection test, the distance represented by 90% or more of PRR was 320 meters at 5 dBm, and 515 meters at 11 dBm. Meanwhile, the distance for PRR 90% was up to 520 meters at urban environment, 1,219 meters on highway, and 1,700 meters inside a tunnel.
机译:交通事故和拥塞是最常见的通道问题,可能是任何地方和随时随地。最近,为了应对这些问题,车辆之间的良好协调的无线通信系统,路边单元(RSU),无人机等,即车辆到一切(V2X)通信系统,已被认为是启用的关键技术 - 宽敞的人性安全和便利。 V2X通信系统的众所周知的构建块之一是基于Wi-Fi的专用短程通信(DSRC),由于长期的研究,简单和分布式操作的简单性和能力。尽管DSRC带来了有前途的机会,但其精心的绩效评估必须在现实世界的情况下,提前致力于实际使用,因为其表现与人类和车辆安全直接相关。在此上下文中,本文介绍了我们实施的基于DSRC的V2X通信系统的现场测试结果。由于视线(LOS)测试,分组接收速率(PRR)的90%或更多的距离为720米,为5dbm,11 dBm为1,035米。在非LOS(NLOS)阴影测试中,PRR的90%或更多的距离为175米,5 dBm,为520米,为11dBm。在NLOS交叉点测试中,PRR的90%或更多的距离为5 dbm,5 dbm,为515米,为11 dBm。与此同时,城市环境的距离90%高达520米,在高速公路上有1219米,隧道内部1,700米。

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