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A novel multicast adaptive logic for dynamic adaptive streaming over HTTP network

机译:用于HTTP网络的动态自适应流的新型多播自适应逻辑

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Video streaming is now responsible for the majority of Internet traffic and is expected to keep growing over the coming years. Dynamic Adaptive Streaming over HTTP (DASH) [1] is an ISO/IEC MPEG multi-quality layer streaming solution that is designed to enable interoperability between servers and clients of different vendors. In the DASH protocol, the client-side player is assumed to have Adaptation Logic (AL). The AL evaluates the various video representation segments available on the server and chooses the most suitable segments balancing between video quality and switching time. Note that dynamic adaptation is necessary due to the fact that the network bandwidth (e.g. cellular network) and the user's buffer are not stable and have a high influence on re-buffering. However, to date, none of the research considers multicast conditions and therefore, there is no AL specifically designed to support multicast at the client side. In this paper, we present the Harmonic Mean Adaptive Logic (HMAL) which is a buffer sensitive adaptation logic that first calculates how many segments exist in the buffer and then estimates the channel bandwidth using the harmonic mean of the previous n samples. The HMAL is designed to support multicast networks by reducing the weights of hight quality segments in the bandwidth estimation and give more weight to lower quality segments. Compared to the multicast versions of well known ALs, the simulation results showed that HMAL has the best bandwidth estimation, the lowest number of re-buffering events, and the highest buffer efficiency.
机译:视频流现在对大多数互联网流量负责,预计将在未来几年继续增长。通过HTTP(DASH)的动态自适应流[1]是ISO / IEC MPEG多质量层流解决方案,旨在在不同供应商的服务器和客户端之间启用互操作性。在DASH协议中,假设客户端播放器具有适应逻辑(AL)。 AL评估服务器上可用的各种视频表示段,并选择视频质量和切换时间之间的最合适的段。注意,由于网络带宽(例如蜂窝网络)和用户的缓冲器不稳定并且对重新缓冲有很大的影响,因此需要动态自适应。然而,迄今为止,研究都不考虑多播条件,因此,没有专门设计用于在客户端支持多播。在本文中,我们介绍了谐波的平均自适应逻辑(HMAL),该谐波平均自适应逻辑(HMAL)是一种缓冲敏感适应逻辑,首先计算缓冲区中存在的段数,然后使用先前N个样本的谐波均值估计信道带宽。 HMAL旨在通过减少带宽估计中的高质量段的权重,并为更高的质量段提供更多重量来支持多播网络。与众所周知的ALS的多播版本相比,仿真结果表明,HMAL具有最佳的带宽估计,重新缓冲事件的最低数量以及最高的缓冲效率。

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