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Real-Time Video Streaming using H.264 Scalable Video Coding (SVC) in Multihomed Mobile Networks: A Testbed Approach

机译:多宿主移动网络中使用H.264可伸缩视频编码(SVC)进行实时视频流传输:一种测试平台方法

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Users of the next generation wireless paradigm known as multihomed mobile networks expect satisfactory quality of service (QoS) when accessing streamed multimedia content. The recent H.264 Scalable Video Coding (SVC) extension to the Advanced Video Coding standard (AVC), offers the facility to adapt real-time video streams in response to the dynamic conditions of multiple network paths encountered in multihomed wireless mobile networks. Nevertheless, preexisting streaming algorithms were mainly proposed for AVC delivery over multipath wired networks and were evaluated by software simulation. This paper introduces a practical, hardware-based testbed upon which we implement and evaluate real-time H.264 SVC streaming algorithms in a realistic multihomed wireless mobile networks environment. We propose an optimised streaming algorithm with multi-fold technical contributions. Firstly, we extended the AVC packet prioritisation schemes to reflect the three-dimensional granularity of SVC. Secondly, we designed a mechanism for evaluating the effects of different streamer 'read ahead window' sizes on real-time performance. Thirdly, we took account of the previously unconsidered path switching and mobile networks tunnelling overheads encountered in real-world deployments. Finally, we implemented a path condition monitoring and reporting scheme to facilitate the intelligent path switching. The proposed system has been experimentally shown to offer a significant improvement in PSNR of the received stream compared with representative existing algorithms.
机译:称为多宿主移动网络的下一代无线模式的用户在访问流式多媒体内容时期望令人满意的服务质量(QoS)。最近对高级视频编码标准(AVC)的H.264可扩展视频编码(SVC)扩展提供了一种功能,以适应多宿主无线移动网络中遇到的多个网络路径的动态情况,以适应实时视频流。尽管如此,主要针对多路径有线网络上的AVC传输提出了现有的流算法,并通过软件仿真对其进行了评估。本文介绍了一个实用的,基于硬件的测试平台,在该测试平台上,我们可以在现实的多宿主无线移动网络环境中实现和评估实时H.264 SVC流算法。我们提出了一种具有多种技术贡献的优化流算法。首先,我们扩展了AVC数据包的优先级分配方案,以反映SVC的三维粒度。其次,我们设计了一种机制,用于评估不同的拖缆“预读窗口”大小对实时性能的影响。第三,我们考虑了以前在实际部署中未曾考虑过的路径切换和移动网络隧道开销。最后,我们实现了路径状况监视和报告方案,以促进智能路径切换。实验表明,与现有的代表性算法相比,该系统可显着改善接收流的PSNR。

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