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An end-to-end approach for optimal mode selection in Internet video communication: theory and application

机译:互联网视频通信中最优模式选择的端到端方法:理论与应用

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Rate-distortion (R-D) optimized mode selection is a fundamental problem for video communication over packet-switched networks. The classical R-D optimized mode selection only considers quantization distortion at the source. Such an approach is unable to achieve global optimality under the error-prone environment since it does not consider the packetization behavior at the source, the transport path characteristics, and receiver behavior. This paper presents an end-to-end approach to generalize the classical theory of R-D optimized mode selection for point-to-point video communication. We introduce a notion of global distortion by taking into consideration both the path characteristics (i.e., packet loss) and the receiver behavior (i.e., the error concealment scheme), in addition to the source behavior (i.e., quantization distortion and packetization). We derive, for the first time, a set of accurate global distortion metrics for any packetization scheme. Equipped with the global distortion metrics, we design an R-D optimized mode selection algorithm to provide the best tradeoff between compression efficiency and error resilience. The theory developed in this paper is general and is applicable to many video coding standards, including H.261/263 and MPEG-1/2/4. As an application, we integrate our theory with point-to-point MPEG-4 video conferencing over the Internet, where a feedback mechanism is employed to convey the path characteristics (estimated at the receiver) and receiver behavior (error concealment scheme) to the source. Simulation results are discussed.
机译:速率失真(R-D)优化模式选择是通过分组交换网络进行视频通信的基本问题。经典的R-D优化模式选择仅考虑源的量化失真。由于这种方法没有考虑源端的打包行为,传输路径特性和接收器行为,因此在容易出错的环境下无法实现全局最优。本文提出了一种端到端的方法来概括点对点视频通信的R-D优化模式选择的经典理论。除了源行为(即量化失真和分组化)之外,我们还通过考虑路径特性(即数据包丢失)和接收器行为(即错误隐藏方案)来引入全局失真的概念。我们首次为任何打包方案推导了一组准确的全局失真度量。配备了全局失真度量之后,我们设计了一种R-D优化模式选择算法,以在压缩效率和错误恢复能力之间提供最佳折衷。本文开发的理论是通用的,适用于许多视频编码标准,包括H.261 / 263和MPEG-1 / 2/4。作为一种应用,我们将我们的理论与互联网上的点对点MPEG-4视频会议进行了整合,其中采用了一种反馈机制来将路径特征(在接收器处估计)和接收器行为(错误隐藏方案)传达给用户。资源。讨论了仿真结果。

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