车辆障碍物对VANETs影响的实验研究

Rui Meireles, Mate Boban, P. Steenkiste, O. Tonguz, J. Barros
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引用次数: 206

摘要

车辆网络的信道模型通常忽略了车辆作为无线信号的物理障碍物的影响。我们的目标是通过一系列无线实验量化障碍物的影响来阐明这种简化的有效性。我们使用两辆配备专用短距离通信(DSRC)硬件的汽车,在停车场、高速公路、郊区和城市峡谷等多种相关场景中进行实验测量,以收集接收到的信号功率和分组传输比信息。在将数据分为视线(LOS)和非视线(NLOS)类别后,我们的结果表明,阻塞车辆对信道质量造成了显著影响。当两辆车在10米的距离上通信时,单个障碍物会导致接收到的信号强度下降超过20分贝。在更远的距离上,NLOS条件会影响可用的通信范围,有效地将可以实现90%成功通信的距离减半。所提出的结果促使将车辆纳入用于VANET仿真的无线电传播模型中,以提高真实感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study on the impact of vehicular obstructions in VANETs
Channel models for vehicular networks typically disregard the effect of vehicles as physical obstructions for the wireless signal. We aim to clarify the validity of this simplification by quantifying the impact of obstructions through a series of wireless experiments. Using two cars equipped with Dedicated Short Range Communications (DSRC) hardware designed for vehicular use, we perform experimental measurements in order to collect received signal power and packet delivery ratio information in a multitude of relevant scenarios: parking lot, highway, suburban and urban canyon. Upon separating the data into line of sight (LOS) and non-line of sight (NLOS) categories, our results show that obstructing vehicles cause significant impact on the channel quality. A single obstacle can cause a drop of over 20 dB in received signal strength when two cars communicate at a distance of 10 m. At longer distances, NLOS conditions affect the usable communication range, effectively halving the distance at which communication can be achieved with 90% chance of success. The presented results motivate the inclusion of vehicles in the radio propagation models used for VANET simulation in order to increase the level of realism.
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