A Multi-Channel Packet Scheduling Approach to Improving Video Delivery Performance in Vehicular Networks

P. P. Garrido Abenza, Manuel P. Malumbres, P. Piñol, O. López-Granado
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Abstract

When working with the Wireless Access in Vehicular Environment (WAVE) protocol stack, the multi-channel operation mechanism of the IEEE 1609.4 protocol may impact the overall network performance, especially when using video streaming applications. In general, packets delivered from the application layer during a Control Channel (CCH) time slot have to wait for transmission until the next Service Channel (SCH) time slot arrives. The accumulation of packets at the beginning of the latter time slot may introduce additional delays and higher contention when all the network nodes try, at the same time, to obtain access to the shared channel in order to send the delayed packets as soon as possible. In this work, we have analyzed these performance issues and proposed a new method, which we call SkipCCH, that helps the MAC layer to overcome the high contention produced by the packet transmission bursts at the beginning of every SCH slot. This high contention implies an increase in the number of packet losses, which directly impacts the overall network performance. With our proposal, streaming video in vehicular networks will provide a better quality of reconstructed video at the receiver side under the same network conditions. Furthermore, this method has particularly proven its benefits when working with Quality of Service (QoS) techniques, not only by increasing the received video quality but also because it avoids starvation of the lower-priority traffic.
提高车载网络视频传输性能的多通道数据包调度方法
在使用车载无线接入(WAVE)协议栈时,IEEE 1609.4 协议的多通道运行机制可能会影响整体网络性能,尤其是在使用视频流应用时。一般来说,在控制信道(CCH)时隙内从应用层发送的数据包必须等待下一个服务信道(SCH)时隙到来才能传输。当所有网络节点都试图同时获得共享信道的访问权以尽快发送延迟的数据包时,后一个时隙开始时数据包的累积可能会带来额外的延迟和更高的争用。在这项工作中,我们分析了这些性能问题,并提出了一种新方法(我们称之为 SkipCCH),该方法可帮助 MAC 层克服每个 SCH 时隙开始时的数据包传输突发所产生的高争用。这种高争用意味着数据包丢失数量的增加,从而直接影响到网络的整体性能。有了我们的建议,在相同的网络条件下,车载网络中的流媒体视频将在接收端提供更高质量的重构视频。此外,这种方法在与服务质量(QoS)技术配合使用时的优势尤为明显,不仅能提高接收视频的质量,还能避免低优先级流量的饥饿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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