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A Comprehensive Performance Analysis of IEEE 802.11p based MAC for Vehicular Communications Under Non-saturated Conditions

机译:非饱和条件下基于IEEE 802.11p的车辆通信MAC的综合性能分析

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Reliable and efficient data broadcasting is essential in vehicular networks to provide safety-critical and commercial service messages on the road. There is still no comprehensive analysis of IEEE 802.11p based MAC that portrays the presence of buffer memory in vehicular networks. Besides, most of the analytical works do not fulfill some of the IEEE 802.11p specifications, such as short retry limit and back-off timer freezing. This paper proposes a 1-D and 2-D Markov model to analyze mathematically IEEE 802.11p based MAC for safety and non-safety messages respectively. The work presented in this paper takes into account the traffic arrival along with the first-order buffer memory and freezing of the back-off timer as well, to utilize the channel efficiently and provide higher accuracy in estimation of channel access, yielding more precise results of the system throughput for non-safety messages and lower delay for safety messages. Furthermore, back-off stages with a short retry limit were applied for non-safety messages in order to meet the IEEE 802.11p specifications, guaranteeing that no packet is served indefinitely, avoiding the overestimation of system throughput. A simulation was carried out to validate the analytical results of our model.
机译:可靠且有效的数据广播在车载网络中至关重要,以在道路上提供对安全至关重要的商业服务消息。仍然没有对基于IEEE 802.11p的MAC的全面分析来描述车辆网络中缓冲存储器的存在。此外,大多数分析工作都不满足某些IEEE 802.11p规范,例如短重试限制和退避计时器冻结。本文提出了一维和二维马尔可夫模型,分别对基于IEEE 802.11p的MAC分别对安全消息和非安全消息进行数学分析。本文提出的工作考虑了流量的到达以及一阶缓冲存储器以及冻结后退计时器的情况,以有效地利用信道并在估计信道访问时提供更高的准确性,从而产生更精确的结果非安全消息的系统吞吐量的降低和安全消息的较低延迟。此外,为了满足IEEE 802.11p规范,将具有较短重试限制的退避阶段应用于非安全消息,从而确保无限期不提供任何数据包,从而避免了系统吞吐量的过高估计。进行了仿真以验证我们模型的分析结果。

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