用于实时视频流的混合NDN-IP架构:从基于主机到基于内容的交付以提高QoE

Ishita Dasgupta, Susmit Shannigrahi, M. Zink
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引用次数: 4

摘要

随着所有客户端平台上的各种应用程序都可以访问实时视频流,创建一个无缝高效的分发系统势在必行,该系统必须足够灵活,可以从最适合视频流(直播、点播、增强现实)的多种互联网架构中进行选择。在本文中,我们强调了这种混合系统对实时视频流的好处,并提供了详细的分析,目标是为观众提供高质量的体验(QoE)。对于我们的混合体系结构,视频流通过操作系统和网络虚拟化技术同时支持TCP/IP和基于命名数据网络(NDN)的体系结构,以设计一个灵活的系统,利用这些不同的互联网体系结构的好处。此外,为了减轻用户在设备上安装新协议栈(在NDN的情况下)的负担,我们以容器的形式开发了一个轻量级解决方案,其中包括网络堆栈和流媒体应用程序。在客户端,可以以透明和自适应的方式选择所需的Internet体系结构(TCP/IP与NDN)。基于原型,我们设计并实现了维护网络资源的有效使用,我们证明了在直播流的情况下,NDN实现了比IP更好的每个客户端的QoE,并且还可以通过网络内缓存利用高于分配的带宽。即使没有缓存,与纯ip相比,我们的混合设置在实时视频流服务上实现了更好的平均比特率和更好的感知视觉质量(通过VMAF度量计算)。此外,我们还详细分析了使用NDN的自适应视频流在QoE方面进一步改进的方法。
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A Hybrid NDN-IP Architecture for Live Video Streaming: From Host-Based to Content-Based Delivery to Improve QoE
With live video streaming becoming accessible in various applications on all client platforms, it is imperative to create a seamless and efficient distribution system that is flexible enough to choose from multiple Internet architectures best suited for video streaming (live, on-demand, AR). In this paper, we highlight the benefits of such a hybrid system for live video streaming as well as present a detailed analysis with the goal to provide a high quality of experience (QoE) for the viewer. For our hybrid architecture, video streaming is supported simultaneously over TCP/IP and Named Data Networking (NDN)-based architecture via operating system and networking virtualization techniques to design a flexible system that utilizes the benefits of these varying Internet architectures. Also, to relieve users from the burden of installing a new protocol stack (in the case of NDN) on their devices, we developed a lightweight solution in the form of a container that includes the network stack as well as the streaming application. At the client, the required Internet architecture (TCP/IP versus NDN) can be selected in a transparent and adaptive manner. Based on a prototype, we have designed and implemented maintaining efficient use of network resources, we demonstrate that in the case of live streaming, NDN achieves better QoE per client than IP and can also utilize higher than allocated bandwidth through in-network caching. Even without caching, as opposed to IP-only, our hybrid setup achieves better average bitrate and better perceived visual quality (computed via VMAF metric) over live video streaming services. Furthermore, we present detailed analysis on ways adaptive video streaming with NDN can be further improved with respect to QoE.
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