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Look-ahead rate adaptation algorithm for DASH under varying network environments

机译:多种网络环境下DASH的超前速率自适应算法

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Dynamic Adaptive Streaming over HTTP (DASH) is slowly becoming the most popular online video streaming technology. DASH enables the video player to adapt the quality of the multimedia content being downloaded in order to match the varying network conditions. The key challenge with DASH is to decide the optimal video quality for the next video segment under the current network conditions. The aim is to download the next segment before the player experiences buffer-starvation. Several rate adaptation methodologies proposed so far rely on the TCP throughput measurements and the current buffer occupancy. However, these techniques, do not consider any information regarding the next segment that is to be downloaded. They assume that the segment sizes are uniform and assign equal weights to all the segments. However, due to the video encoding techniques employed, different segments of the video with equal playback duration are found to be of different sizes. In the current paper, we propose to list the individual segment characteristics in the Media Presentation Description (MPD) file during the preprocessing stage; this is later used in the segment download time estimations. We also propose a novel rate adaptation methodology that uses the individual segment sizes in addition to the measured TCP throughput and the buffer occupancy estimate for the best video rate to be used for the next segments.
机译:基于HTTP的动态自适应流(DASH)逐渐成为最受欢迎的在线视频流技术。 DASH使视频播放器可以调整正在下载的多媒体内容的质量,以匹配不断变化的网络条件。 DASH面临的主要挑战是在当前网络条件下为下一个视频片段确定最佳视频质量。目的是在玩家遇到缓冲区不足之前下载下一个片段。到目前为止,提出的几种速率适配方法依赖于TCP吞吐量测量和当前的缓冲区占用率。但是,这些技术不考虑有关要下载的下一个段的任何信息。他们假定段的大小是统一的,并为所有段分配相等的权重。但是,由于采用了视频编码技术,因此具有相同播放持续时间的视频的不同片段的大小不同。在本文中,我们建议在预处理阶段在媒体表示描述(MPD)文件中列出各个细分的特征;稍后将其用于段下载时间估计中。我们还提出了一种新颖的速率自适应方法,该方法除了测量的TCP吞吐量和缓冲区占用率估算值之外,还使用各个段的大小,以用于下一个段的最佳视频速率。

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