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A Cross-Layer Design for Perceptual Optimization Of H.264/SVC with Unequal Error Protection

机译:具有不均等错误保护的H.264 / SVC感知优化的跨层设计

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Delivering high perceptual quality video over wireless channels is challenging due to the changing channel quality and the variations in the importance of one source packet to the next for the end-user's perceptual experience. Leveraging perceptual metrics in concert with link adaptation to maximize perceptual quality and satisfy real-time delay constraints is largely unexplored. We introduce an APP/MAC/PHY cross-layer architecture that enables optimizing perceptual quality for delay-constrained scalable video transmission. We propose an online QoS-to-QoE mapping technique to quantify the loss visibility of packets from each video layer using the ACK history and perceptual metrics. At the PHY layer, we develop a link adaptation technique that uses the QoS-to-QoE mapping to provide perceptually-optimized unequal error protection per layer according to packet loss visibility. At the APP layer, the source rate is adapted by selecting the set of temporal and quality layers to be transmitted based on the channel statistics, source rates, and playback buffer state. The proposed cross-layer optimization framework allows the channel to adapt at a faster time scale than the video codec. Furthermore, it provides a tradeoff between playback buffer occupancy and perceptual quality. We show that the proposed architecture prevents playback buffer starvation, provides immunity against short-term channel fluctuations, regulates the buffer size, and achieves a 30% increase in video capacity versus throughput-optimal link adaptation.
机译:由于信道质量的变化以及对于最终用户的感知体验而言,一个源数据包对下一个源数据包的重要性的变化,在无线信道上交付高感知质量的视频具有挑战性。尚未充分利用感知指标与链接自适应相结合来最大化感知质量并满足实时延迟约束。我们引入了APP / MAC / PHY跨层体系结构,该体系结构可以优化延迟受限的可伸缩视频传输的感知质量。我们提出了一种在线QoS到QoE映射技术,以使用ACK历史记录和感知指标来量化来自每个视频层的数据包的丢失可见性。在PHY层,我们开发了一种链路自适应技术,该技术使用QoS到QoE映射来根据数据包丢失可见性在每层上提供经过感知优化的不均等错误保护。在APP层,通过基于信道统计信息,源速率和回放缓冲区状态选择要发送的时间和质量层集,来调整源速率。所提出的跨层优化框架允许频道以比视频编解码器更快的时间比例适应。此外,它在回放缓冲区占用率和感知质量之间提供了一个折衷方案。我们表明,提出的体系结构可防止播放缓冲区不足,为短期通道波动提供抗扰性,调节缓冲区大小,并且与吞吐量优化的链路自适应相比,可将视频容量提高30%。

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