低延迟视频传输的率失真优化i片选择

Yuan Lin, A. N. Kim, Eren Gürses, A. Perkis
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引用次数: 4

摘要

在网络上传输实时视频时,速率平滑对于实现较低的延迟至关重要。近年来,“显式基于切片的模式选择”(explicit slice-based mode selection, ESM)以其固有的质量平滑性和容错性作为实现这一目标的一种新方法被提出。然而,以往的研究主要集中在实际方面,并没有提出一个优化的解决方案。在本文中,我们提出了一种率失真(RD)优化解决方案,用于寻找编码内切片的最佳位置和大小。实验结果表明,对于目标比特率,在不同丢包率的无线信道上,优化方案能够在宏块级别上提供接近模式选择的性能。此外,优化后的ESM算法为网络传输提供了粒度比特流优先级的显著优势。然而,基于RD的优化通常在计算上是昂贵的。因此,我们提出了一种结合信道统计和序列特征的启发式方法。结果表明,该方法在较低的复杂度下获得了接近最优的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rate-Distortion Optimized I-Slice Selection for Low Delay Video Transmission
Rate smoothing is essential for achieving lower delay when transmitting real-time video over the network. Recently, "explicit slice-based mode selection" (ESM) is proposed as a new way of achieving this goal together with its inherent quality smoothness and error resilience features. However previous studies focus on the practical aspects and do not address an optimized solution. In this paper, we propose a rate-distortion (RD) optimized solution for finding the best location and size of the intra-coded slices. The experimental results show that for a target bit rate the optimized scheme is able to offer performance close to that of mode selection on a macroblock level, over wireless channels with different packet loss rates. Moreover, the optimized ESM algorithm provides significant advantages of granular bit stream prioritization for network transmission. However, the RD based optimization is in general computationally expensive. We therefore propose a heuristic approach which incorporates both channel statistics and sequence characteristics. Results show that it yields close to optimal performance at lower complexity.
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