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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >On the Ability of the 802.11p MAC Method and STDMA to Support Real-Time Vehicle-to-Vehicle Communication
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On the Ability of the 802.11p MAC Method and STDMA to Support Real-Time Vehicle-to-Vehicle Communication

机译:802.11p MAC方法和STDMA支持实时车对车通信的能力

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摘要

Traffic safety applications using vehicle-to-vehicle (V2V) communication is an emerging and promising area within the intelligent transportation systems (ITS) sphere. Many of these new applications require real-time communication with high reliability, meaning that packets must be successfully delivered before a certain deadline. Applications with early deadlines are expected to require direct V2V communications, and the only standard currently supporting this is the upcoming IEEE 802.11p, included in the wireless access in vehicular environment (WAVE) stack. To meet a real-time deadline, timely and predictable access to the channel is paramount. However, the medium access method used in 802.11p, carrier sense multiple access with collision avoidance (CSMA/CA), does not guarantee channel access before a finite deadline. In this paper, we analyze the communication requirements introduced by traffic safety applications, namely, low delay, reliable, real-time communications. We show by simulation of a simple, but realistic, highway scenario, that vehicles using CSMA/CA can experience unacceptable channel access delays and, therefore, 802.11p does not support real-time communications. In addition, we present a potential remedy for this problem, namely, the use of self-organizing time division multiple access (STDMA). The real-time properties of STDMA are investigated by means of the same highway simulation scenario, with promising results.
机译:使用车对车(V2V)通信的交通安全应用是智能交通系统(ITS)领域中一个新兴且有希望的领域。这些新应用中的许多都需要高可靠性的实时通信,这意味着必须在一定期限之前成功传送数据包。预计截止日期较早的应用程序需要直接V2V通信,并且当前唯一支持该标准的标准是即将发布的IEEE 802.11p,该标准已包含在车载环境(WAVE)的无线访问中。为了满足实时期限,及时,可预测地访问频道至关重要。但是,在802.11p中使用的媒体访问方法,即载波侦听多路访问和避免冲突(CSMA / CA),不能保证在有限的期限之前进行信道访问。在本文中,我们分析了交通安全应用程序引入的通信需求,即低延迟,可靠,实时通信。通过模拟一个简单但现实的高速公路场景,我们发现使用CSMA / CA的车辆可能会遇到无法接受的信道访问延迟,因此802.11p不支持实时通信。此外,我们提出了对此问题的潜在补救措施,即使用自组织时分多址(STDMA)。通过相同的高速公路模拟场景研究了STDMA的实时特性,并获得了可喜的结果。

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