End-to-end distortion optimized error control for real-time wireless video streaming

Guangchao Peng, Yanwei Liu, Yahui Hu, S. Ci, Hui Tang
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引用次数: 5

Abstract

In wireless video streaming, the packet loss often occurs and affects the end-user visual quality. To alleviate the transmission error effects, intra refresh coding is usually used to improve the streaming error resilience ability from the view of source coding. At the physical layer, the adaptive modulation and coding (AMC) is also used to promote the transmission reliability at the transporting level. Both the error control components have their own influences on the received video quality. To achieve the best video transmission performance, it is crucial to make an error control tradeoff between intra refresh coding and AMC. In this paper, we propose an end-to-end video distortion optimized cross-layer error control method which jointly considers the video quantization parameter (QP) and intra refresh rate at the application layer, and AMC at the physical layer for delay-constraint real-time video streaming. The experimental results show that the proposed cross-layer error control streaming method can achieve the superior objective and subjective performances to the layer-independent error control streaming methods with and without cross-layer optimization.
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实时无线视频流端到端失真优化误差控制
在无线视频流中,经常会出现丢包现象,影响终端用户的视觉质量。为了减轻传输误差的影响,通常采用帧内刷新编码,从源编码的角度提高流的容错能力。在物理层,自适应调制编码(AMC)也被用于提高传输层的传输可靠性。这两个误差控制组件对接收到的视频质量都有各自的影响。为了获得最佳的视频传输性能,在帧内刷新编码和帧内刷新编码之间进行错误控制的权衡是至关重要的。本文提出了一种端到端视频失真优化的跨层误差控制方法,该方法在应用层综合考虑视频量化参数(QP)和帧内刷新率,在物理层综合考虑AMC,用于时延约束的实时视频流。实验结果表明,所提出的跨层误差控制流方法在客观和主观性能上都优于具有和不具有跨层优化的层无关误差控制流方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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