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Dynamic Adaptive Video Streaming: Towards a Systematic Comparison of ICN and TCP/IP

机译:动态自适应视频流:对ICN和TCP / IP进行系统比较

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Streaming of video content over the Internet is experiencing an unprecedented growth. While video permeates every application, it also puts tremendous pressure in the network-to support users having heterogeneous accesses and expecting a high quality of experience, in a furthermore cost-effective manner. In this context, future internet paradigms, such as information centric networking (ICN), are particularly well suited to not only enhance video delivery at the client (as in the dynamic adaptive streaming over HTTP (DASH) approach), but to also naturally and seamlessly extend video support deeper in the network functions. In this paper, we contrast ICN and transmission control protocol/internet protocol (TCP/IP) with an experimental approach, where we employ several state-of-the-art DASH controllers (PANDA, AdapTech, and BOLA) on an ICN versus TCP/IP network stack. Our campaign, based on tools that we developed and made available as open-source software, includes multiple clients (homogeneous vesrus heterogeneous mixture and synchronous vesrus asynchronous arrivals), videos (up to 4k resolution), channels (e.g., DASH profiles, emulated WiFi and LTE, and real 3G/4G traces), and levels of integration with an ICN network (i.e., vanilla named data networking (NDN), wireless loss detection and recovery at the access point, and load balancing). Our results clearly illustrate, as well as quantitatively assess, the benefits of ICN-based streaming, warning about potential pitfalls that are however easy to avoid.
机译:互联网上的视频内容流正在经历前所未有的增长。尽管视频渗透到每个应用程序中,但它也给网络带来了巨大的压力-以更具成本效益的方式支持具有异构访问权限并期望高质量体验的用户。在这种情况下,未来的互联网范例,例如以信息为中心的联网(ICN),不仅非常适合增强客户端的视频传递(如在HTTP上的动态自适应流传输(DASH)方法中),而且还非常适合在网络功能中无缝扩展视频支持。在本文中,我们将ICN和传输控制协议/互联网协议(TCP / IP)与一种实验方法进行了对比,在该方法中,我们在ICN与TCP上采用了几种最新的DASH控制器(PANDA,AdapTech和BOLA) / IP网络堆栈。我们的活动基于我们开发并作为开源软件提供的工具,包括多个客户端(同质vesrus异构混合物和同步vesrus异步到达),视频(最高4k分辨率),频道(例如DASH配置文件,仿真WiFi)和LTE,以及真实的3G / 4G轨迹),以及与ICN网络的集成级别(即,香草命名数据网络(NDN),在接入点进行无线丢失检测和恢复以及负载平衡)。我们的结果清楚地说明并定量评估了基于ICN的流式传输的好处,并警告了容易避免的潜在陷阱。

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