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Rate-distortion optimized mode selection for very low bit rate video coding and the emerging H.263 standard

机译:针对极低比特率视频编码和新兴的H.263标准的速率失真优化模式选择

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This paper addresses the problem of encoder optimization in a macroblock-based multimode video compression system. An efficient solution is proposed in which, for a given image region, the optimum combination of macroblock modes and the associated mode parameters are jointly selected so as to minimize the overall distortion for a given bit-rate budget. Conditions for optimizing the encoder operation are derived within a rate-constrained product code framework using a Lagrangian formulation. The instantaneous rate of the encoder is controlled by a single Lagrange multiplier that makes the method amenable to mobile wireless networks with time-varying capacity. When rate and distortion dependencies are introduced between adjacent blocks (as is the case when the motion vectors are differentially encoded and/or overlapped block motion compensation is employed), the ensuing encoder complexity is surmounted using dynamic programming. Due to the generic nature of the algorithm, it can be successfully applied to the problem of encoder control in numerous video coding standards, including H.261, MPEG-1, and MPEG-2. Moreover, the strategy is especially relevant for very low bit rate coding over wireless communication channels where the low dimensionality of the images associated with these bit rates makes real-time implementation very feasible. Accordingly, in this paper, the method is successfully applied to the emerging H.263 video coding standard with excellent results at rates as low as 8.0 Kb per second. Direct comparisons with the H.263 test model, TMN5, demonstrate that gains in peak signal-to-noise ratios (PSNR) are achievable over a wide range of rates.
机译:本文解决了基于宏块的多模式视频压缩系统中编码器优化的问题。提出了一种有效的解决方案,其中对于给定的图像区域,联合选择宏块模式和相关模式参数的最佳组合,以便在给定的比特率预算下将总失真最小化。使用拉格朗日公式在速率受限的产品代码框架内得出优化编码器操作的条件。编码器的瞬时速率由单个Lagrange乘法器控制,这使该方法适用于具有时变容量的移动无线网络。当在相邻块之间引入速率和失真相关性时(如运动矢量被差分编码和/或采用重叠块运动补偿时的情况),随后的编码器复杂度将通过动态编程来克服。由于该算法的通用性质,它可以成功地应用于包括H.261,MPEG-1和MPEG-2在内的众多视频编码标准中的编码器控制问题。此外,该策略特别适用于无线通信信道上的非常低的比特率编码,其中与这些比特率相关的图像的低维数使得实时实现非常可行。因此,在本文中,该方法成功地应用于新兴的H.263视频编码标准,并以低至8.0 Kb /秒的速率获得了出色的结果。与H.263测试模型TMN5的直接比较表明,可以在很宽的速率范围内获得峰值信噪比(PSNR)的增益。

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