In this paper, we focus on the performance of vehicle-to-vehicle (V2V) communication adopting the Dedicated Short Range Communication (DSRC) application in periodic broadcast mode. An analytical model is studied and a fixed point method is used to analyze the packet delivery ratio (PDR) and mean delay based on the IEEE 802.11p standard in a fully connected network under the assumption of perfect PHY performance. With the characteristics of V2V communication, we develop the Semi-persistent Contention Density Control (SpCDC) scheme to improve the DSRC performance. We use Monte Carlo simulation to verify the results obtained by the analytical model. The simulation results show that the packet delivery ratio in SpCDC scheme increases more than 10% compared with IEEE 802.11p in heavy vehicle load scenarios. Meanwhile, the mean reception delay decreases more than 50%, which provides more reliable road safety.
翻译:在本文中,我们着重介绍在定期广播模式中采用专用短距离通信(DSRC)应用的车辆对车辆(V2V)通信的性能,研究了一个分析模型,并使用固定点方法分析包件交付率(PDR)和平均延迟率(IEE 802.11p),在完全连接的网络中,根据完美的PHY性能假设IEE 802.11p标准。根据V2V通信的特点,我们开发了半中度内容密度控制(SpCDC)计划,以改善DSRC的性能。我们利用蒙特卡洛模拟来核查分析模型取得的结果。模拟结果表明,SpCDC计划中的包件交付率(PCDC)比重型车辆负荷情况下IEE 802.11p增加了10%以上。与此同时,平均接收延迟率减少了50%以上,这提供了更可靠的道路安全。