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A framework for quality-adaptive media streaming: Encode once - stream anywhere.

机译:适用于质量的媒体流的框架:编码一次-到任何地方流。

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摘要

This dissertation presents a general design strategy for streaming media applications in best effort computing and networking environments. Our target application scenario is video streaming using commodity computers and the Internet. In this scenario, where resource reservations and admission control mechanisms are generally not available, effective streaming should be able to adapt to variations in bandwidth in a responsive and graceful manner. The design strategy we propose is based on a single simple idea, adaptation by priority data dropping, or priority drop for short. We evaluate the efficacy of priority drop in the video and networking domains.; For video, we show how common compression formats can be extended to support priority drop, thereby becoming streaming friendly. In particular, we demonstrate that priority-drop video allows adaptation over a wide range of rates and with fine granularity, and that the adaptation is tailorable through declarative adaptation-policy specifications. Our main technical contribution is to show how to express adaptation policies and how to do priority-mapping, an automatic translation from adaptation policies to priority assignments on the basic units of video.; In the networking component of this thesis, we present two versions of Priority-Progress Streaming, a real-time best-effort streaming protocol. The basic version does classic unicast streaming for video on demand style streaming applications. The extended version supports efficient broadcast style streaming, through a multi-rate multicast overlay.; We have implemented a prototype video streaming system that combines priority-drop video, priority mapping, and the Priority-Progress Streaming proctocols. The system demonstrates the following advantages of our approach: (a) it maintains timeliness of the stream in the face of rate fluctuations in the network, (b) it utilizes available bandwidth fully thereby maximizing the average video quality, (c) it starts video display quickly after the user initiates the stream, and (d) it limits the number of quality changes that occur. In summary, we will show that priority-drop is very effective: a single video source can be streamed across a wide range of network bandwidths, and on networks saturated with competing traffic, all the while maintaining real-time performance and gracefully adapting quality.
机译:本文提出了一种在尽力而为的计算和网络环境中流媒体应用的通用设计策略。我们的目标应用场景是使用商用计算机和Internet进行视频流传输。在这种情况下,通常无法使用资源预留和准入控制机制,有效的流传输应该能够以响应和优美的方式适应带宽的变化。我们提出的设计策略基于一个简单的想法,即通过优先级数据删除或简称为 priority drop 进行修改。我们评估了视频和网络领域中优先级降低的功效。对于视频,我们展示了如何扩展常见的压缩格式以支持优先级降低,从而变得流友好。特别是,我们证明了优先丢弃视频可以在广泛的速率范围内以精细的粒度进行自适应,并且该自适应可通过声明性自适应策略规范进行定制。我们的主要技术贡献是展示如何表达适应政策,以及如何执行优先级映射,这是从适应策略到视频基本单元上优先级分配的自动转换。在本文的网络组件中,我们提出了两种版本的优先级进度流,这是一种实时尽力而为的流协议。基本版本为视频点播样式的流应用程序提供经典的单播流。扩展版本通过多速率组播覆盖来支持高效的广播样式流。我们已经实现了原型视频流传输系统,该系统结合了优先级下降视频,优先级映射和优先级进度流传输协议。该系统展示了我们方法的以下优点:(a)面对网络速率波动,保持流的及时性;(b)充分利用可用带宽,从而最大限度地提高平均视频质量;(c)启动视频在用户启动流后迅速显示,并且(d)限制了发生的质量更改的次数。总而言之,我们将显示优先级降低非常有效:单个视频源可以在广泛的网络带宽上以及在竞争流量饱和的网络上流式传输,同时始终保持实时性能和优雅地适应质量。

著录项

  • 作者

    Krasic, Charles.;

  • 作者单位

    OGI School of Science & Engineering.;

  • 授予单位 OGI School of Science & Engineering.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自动化技术、计算机技术;
  • 关键词

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