虚拟化端到端管理功能,实现视频流量聚合控制

K. Ravindran, Ancy Cherian, Arun Adiththan
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引用次数: 1

摘要

介绍了端到端速率自适应视频传输系统中各网络节点的管理和控制功能。移动用户设备通过共享入口节点的底层网络路径下载视频。在核心软件层面,M&C功能实现了著名的基于AIMD(加性增加乘性减少)的视频速率控制算法来处理路径上的拥塞。AIMD基于接收方出口节点发出的“丢失报告”信号,对源入口节点的聚合数据流执行。相对于在每个用户设备上锚定一个AIMD实例的现有方法,我们基于AIMD的聚合控制减少了信令开销。这提供了可伸缩性,同时改善了用户体验的QoS:例如传输速率的低抖动和对设备故障的隔离。将基于aimd的聚合控制卸载到网络内覆盖节点也可以减少总体带宽使用。在设备中细粒度视频编码器的背景下,讨论了用户设备和出口节点之间路径中“最后一英里”问题的软件处理(例如贪婪用户和接入网络信道共享)。本文还展示了我们的M&C功能的虚拟化(作为VNF模块),用于大规模视频分发网络(如YouTube)的部署。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtualized End-to-End Management Functions for Aggregated Control of Video Traffic Flows
The paper describes the management and control (M&C) functions of various network nodes in an end-to-end rate-adaptive video transport system. Mobile user devices download video clips by sharing the underlying network path from an ingress node. At the core software level, M&C functions realize the well-known AIMD (additive increase multiplicative decrease) based video rate control algorithm to handle congestion along the path. AIMD is exercised on the aggregated data flows at a source ingress node based on the 'loss reports' signaled from the receiver egress node. Our aggregated AIMD-based control reduces the signaling overhead, relative to the existing approaches that anchor an AIMD instance on each user device itself. This offers scalability, while improving the user-experienced QoS: such as low jitter in transfer rates and isolation against device faults. The offloading of aggregated AIMD-based control to the in-network overlay nodes also allows a reduction in the overall bandwidth usage. The software handling of 'last-mile' issues in the path between user devices and egress nodes (such as greedy users and access network channel sharing) are discussed, in a context of fine-granular video encoders in the devices. The paper also shows a virtualization of our M&C functions (as VNF modules) for deployment in large-scale video distribution networks --- such as YouTube.
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