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Fast Channel Zapping with Destination-Oriented Multicast for IP Video Delivery

机译:快速频道切换和面向目的地的组播,用于IP视频传输

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Channel zapping time is a critical quality of experience (QoE) metric for IP-based video delivery systems such as IPTV. An interesting zapping acceleration scheme based on time-shifted subchannels (TSS) was recently proposed, which can ensure a zapping delay bound as well as maintain the picture quality during zapping. However, the behaviors of the TSS-based scheme have not been fully studied yet. Furthermore, the existing TSS-based implementation adopts the traditional IP multicast, which is not scalable for a large-scale distributed system. Corresponding to such issues, this paper makes contributions in two aspects. First, we resort to theoretical analysis to understand the fundamental properties of the TSS-based service model. We show that there exists an optimal subchannel data rate which minimizes the redundant traffic transmitted over subchannels. Moreover, we reveal a start-up effect, where the existing operation pattern in the TSS-based model could violate the zapping delay bound. With a solution proposed to resolve the start-up effect, we rigorously prove that a zapping delay bound equal to the subchannel time shift is guaranteed by the updated TSS-based model. Second, we propose a destination-oriented-multicast (DOM) assisted zapping acceleration (DAZA) scheme for a scalable TSS-based implementation, where a subscriber can seamlessly migrate from a subchannel to the main channel after zapping without any control message exchange over the network. Moreover, the subchannel selection in DAZA is independent of the zapping request signaling delay, resulting in improved robustness and reduced messaging overhead in a distributed environment. We implement DAZA in ns-2 and multicast an MPEG-4 video stream over a practical network topology. Extensive simulation results are presented to demonstrate the validity of our analysis and DAZA scheme.
机译:对于基于IP的视频传输系统(例如IPTV),频道切换时间是至关重要的体验质量(QoE)指标。最近提出了一种有趣的基于时移子信道(TSS)的快速加速方案,该方案可以确保快速切换延迟范围并在快速切换期间保持图像质量。但是,基于TSS的方案的行为尚未得到充分研究。此外,现有的基于TSS的实现采用传统的IP多播,对于大型分布式系统而言,该多播是不可扩展的。针对这些问题,本文在两个方面做出了贡献。首先,我们借助理论分析来了解基于TSS的服务模型的基本属性。我们表明存在一个最优的子信道数据速率,该速率可最大程度地减少通过子信道传输的冗余流量。此外,我们揭示了一种启动效应,其中基于TSS的模型中的现有操作模式可能会违反快速切换延迟界限。通过提出解决启动效应的解决方案,我们严格证明了通过更新的基于TSS的模型可以保证等于子信道时移的跳变延迟范围。其次,我们提出了一种面向目标的多播(DOM)辅助快速切换加速(DAZA)方案,用于基于TSS的可扩展实现,其中,快速切换后,订户可以从子信道无缝迁移到主信道,而无需通过网络。此外,DAZA中的子信道选择与切换请求信令延迟无关,从而在分布式环境中提高了健壮性并减少了消息传递开销。我们在ns-2中实现DAZA,并通过实际的网络拓扑多播MPEG-4视频流。大量的仿真结果证明了我们的分析和DAZA方案的有效性。

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