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A frequency-domain video transcoder for dynamic bit-rate reductionof MPEG-2 bit streams

机译:一种用于动态降低MPEG-2比特流比特率的频域视频代码转换器

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Many of the forthcoming video services and multimedia applications are expected to use preencoded video for storage and transmission. Video transcoding is intended to provide transmission flexibility to preencoded bit streams by dynamically adjusting the bit rate of these bit streams according to new bandwidth constraints that were unknown at the time of encoding. In this paper, we propose a drift-free MPEG-2 video transcoder, working entirely in the frequency domain. The various modes of motion compensation (MC) defined in MPEG-2 are implemented in the discrete cosine transform (DCT) domain at reduced computational complexity. By using approximate matrices to compute the MC-DCT blocks, we show that computational complexity can be reduced by 81% compared with the pixel domain approach. Moreover, by using a Lagrangian rate-distortion optimization for bit reallocation, we show that optimal transcoding of high-quality bit streams can produce better picture quality than that obtained by directly encoding the uncompressed video at the same bit rates using a nonoptimized Test Model 5 (TM5) encoder
机译:预计许多即将推出的视频服务和多媒体应用程序将使用预编码的视频进行存储和传输。视频转码旨在通过根据编码时未知的新带宽约束动态调整这些比特流的比特率,为预编码比特流提供传输灵活性。在本文中,我们提出了一种完全在频域中工作的无漂移MPEG-2视频代码转换器。在MPEG-2中定义的各种运动补偿(MC)模式以降低的计算复杂度在离散余弦变换(DCT)域中实现。通过使用近似矩阵来计算MC-DCT块,我们表明与像素域方法相比,计算复杂度可以降低81%。此外,通过使用拉格朗日速率失真优化进行位重新分配,我们证明,与使用非优化测试模型5以相同比特率直接编码未压缩视频所获得的图像质量相比,高质量比特流的最佳代码转换可以产生更好的图像质量。 (TM5)编码器

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