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HTTP adaptive streaming and access router management: The users' and network's perspectives

机译:HTTP自适应流和访问路由器管理:用户和网络的透视图

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The share of video streaming in the Internet traffic is expected to reach 80% by 2019. To deliver these video services in possibly strained settings and to meet with the users requirement of anywhere and multi-screen experience, HTTP Adaptive Streaming (HAS) is gaining momentum. However, TCP-transport of HAS flows is known to entail a number of issues both on Quality of Experience (QoE) and network metrics. Thanks to testbed experiments, we examine the video streaming performance in a home access scenario by exposing the interplay between the video rate adaptation logic (Buffer-Based-BBA, or Rate-Based-RBA) and the buffer sizes and policies (Droptail, Active Queue Managements - AQMs). A main finding is that AQMs move the bulk of TCP losses from the initial burst and ACK-trailing phases, problematic to HAS flows, to the more favorable ACK-clocking phase. We thereby show that implementing AQM CoDel at the access router is a simpler means, working for any family of client's adaptation, to improve QoE and network metrics than striving to smooth out the HAS bursts by pacing at the client or middleboxes, as previous approaches do.
机译:到2019年,互联网流量中视频流的份额预计将达到80%。要在可能紧张的环境中提供这些视频服务,并满足任何地方的用户要求和多屏幕体验,HTTP自适应流媒体(具有)正在获取势头。然而,已知具有流量的TCP传输,以便在经验质量(QoE)和网络指标上存在许多问题。由于经过测试的实验,通过在视频速率适应逻辑(基于缓冲 - 基于BBA或RACE-RBA)和缓冲区大小和策略之间(DropTail,Active)之间的相互作用,检查家庭访问方案中的视频流性能队列管理 - AQMS)。主要发现是AQMS从初始突发和ACK尾随阶段移动大量TCP损耗,有问题的流量,以更有利的ACK时钟阶段。从而表明,在接入路由器处实现AQM Codel是一种更简单的方法,适用于任何客户的适应,改善QoE和网络度量,而不是争取在客户端或中间盒上通过起搏的突发突发,因为之前的方法。

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