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To send or to defer? Improving the IEEE 802.11p/1609.4 transmission scheme

机译:发送还是推迟?改进IEEE 802.11p / 1609.4传输方案

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摘要

The IEEE 1609.4 protocol has been proposed to improve message delivery in Vehicular Ad Hoc Networks (VANETs) through its multi-channel usage. To ensure good performance for safety applications, during the first half of a synchronization interval, each vehicle tunes a dedicated Control CHannel (CCH) to exchange safety messages, and during the second half, either it stays on the CCH or switches to one of the six available Service CHannels (SCH). As demonstrated in the literature, such behavior leads safety messages to suffer, from synchronous collisions at the start of the CCH interval, as well as from high end-to-end delays caused by the queue-up during the SCH intervals. To address these issues, we propose DMS, a Distributed MAC Scheduler that relies on the Optimal Stopping Theory to evenly balance the channel load by introducing tolerated deferring delays before sending a message. This ensures a higher reception probability and lower collision risks, while complying with Enhanced Distributed Channel Access (EDCA) access categories (ACs). Simulation study shows the ability of our approach to increase the reception rate of safety messages up to 25%, to decrease loses up to 47%, and to improve the load balancing during the CCH interval. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经提出了IEEE 1609.4协议,以通过其多通道使用来改善车载Ad Hoc网络(VANET)中的消息传递。为了确保安全应用的良好性能,在同步间隔的前半段,每辆车都会调谐一个专用的控制通道(CCH)来交换安全消息,而在下半段,它要么停留在CCH上,要么切换到其中一个。六个可用的服务通道(SCH)。如文献所示,这种行为导致安全消息遭受CCH间隔开始时的同步冲突,以及SCH间隔中排队引起的高端到高端延迟。为了解决这些问题,我们提出了DMS,一种分布式MAC调度程序,它基于最佳停止理论,通过在发送消息之前引入可容忍的延迟延迟来均衡信道负载。这确保了更高的接收概率和更低的冲突风险,同时符合增强型分布式信道访问(EDCA)访问类别(AC)。仿真研究表明,我们的方法能够将安全消息的接收率提高到25%,将损失降低到47%,并改善CCH间隔内的负载平衡。 (C)2016 Elsevier B.V.保留所有权利。

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