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RTP-based broadcast streaming of high definition H.264/AVC video: an error robustness evaluation

机译:高清晰度H.264 / AVC视频的基于RTP的广播流:错误鲁棒性评估

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In this work, we present an evaluation of the performance and error robustness of RTP-based broadcast streaming of high-quality high-definition (HD) H.264/AVC video. Using a fully controlled IP test bed (Hillestad et ah, 2005), we broadcast high-definition video over RTP/UDP, and use an IP network emulator to introduce a varying amount of randomly distributed packet loss. A high-performance network interface monitoring card is used to capture the video packets into a trace file. Purpose-built software parses the trace file, analyzes the RTP stream and assembles the correctly received NAL units into an H.264/AVC Annex B byte stream file, which is subsequently decoded by JVT JM 10.1 reference software. The proposed measurement setup is a novel, practical and intuitive approach to perform error resilience testing of real-world H.264/AVC broadcast applications. Through a series of experiments, we evaluate some of the error resilience features of the H.264/AVC standard, and see how they perform at packet loss rates from 0.01% to 5%. The results confirmed that an appropriate slice partitioning scheme is essential to have a graceful degradation in received quality in the case of packet loss. While flexible macroblock ordering reduces the compression efficiency about 1 dB for our test material, reconstructed video quality is improved for loss rates above 0.25%.
机译:在这项工作中,我们提出了对基于RTP的高质量高清(HD)H.264 / AVC视频广播流的性能和错误鲁棒性的评估。使用完全受控的IP测试平台(Hillestad等,2005),我们通过RTP / UDP广播高清视频,并使用IP网络仿真器引入各种数量的随机分布的数据包丢失。高性能网络接口监视卡用于将视频数据包捕获到跟踪文件中。专用软件解析跟踪文件,分析RTP流,并将正确接收的NAL单元组装到H.264 / AVC附件B字节流文件中,然后由JVT JM 10.1参考软件解码。提出的测量设置是一种新颖,实用,直观的方法,可以对现实世界中的H.264 / AVC广播应用程序进行错误恢复能力测试。通过一系列实验,我们评估了H.264 / AVC标准的一些错误恢复能力,并观察了它们在0.01%至5%丢包率下的性能。结果证实,在丢包的情况下,适当的片分区方案对于使接收质量具有适度的降低是必不可少的。尽管灵活的宏块排序将测试材料的压缩效率降低了约1 dB,但对于丢失率高于0.25%的视频,其重构视频质量有所改善。

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