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Provisioning QoS controlled media access in vehicular to infrastructure communications

机译:在车辆中配置QoS控制的媒体访问基础结构通信

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摘要

The emerging IEEE 802.11p standard adopts the enhanced distributed channel access (EDCA) mechanism as its Media Access Control (MAC) scheme to support quality-of-service (QoS) in the rapidly changing vehicular environment While the IEEE 802.11 protocol family represents the dominant solutions for wireless local area networks, its QoS performance in terms of throughput and delay, in the highly mobile vehicular networks, is still unclear. To explore an in-depth understanding on this issue, in this paper, we develop a comprehensive analytical model that takes into account both the QoS features of EDCA and the vehicle mobility (velocity and moving directions). Based on the model, we analyze the throughput performance and mean transmission delay of differentiated service traffic, and seek solutions to optimally adjust the parameters of EDCA towards the controllable QoS provision to vehicles. Analytical and simulation results are given to demonstrate the accuracy of the proposed model for varying EDCA parameters and vehicle velocity and density.
机译:新兴的IEEE 802.11p标准采用增强的分布式信道访问(EDCA)机制作为其媒体访问控制(MAC)方案,以在快速变化的车辆环境中支持服务质量(QoS),而IEEE 802.11协议家族代表了主导地位对于无线局域网的解决方案,在高度移动的车载网络中,其在吞吐量和延迟方面的QoS性能仍不清楚。为了探索对此问题的深入理解,在本文中,我们开发了一个综合的分析模型,该模型同时考虑了EDCA的QoS功能和车辆移动性(速度和行进方向)。基于该模型,我们分析了差异化业务流量的吞吐性能和平均传输延迟,并寻求解决方案,以针对车辆的可控QoS提供最优地调整EDCA参数。给出的分析和仿真结果证明了所提出的模型对于变化的EDCA参数以及车辆速度和密度的准确性。

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