A novel DCT domain transcoder for transcoding video streams with half-pixel motion vectors

Gang Cao , Zhijun Lei , Jintao Li , Nicolas D. Georganas , Zhenmin Zhu
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引用次数: 3

Abstract

Video transcoding is one of the key techniques to provide heterogeneous multimedia applications with Universal Multimedia Access (UMA) service. Recently, compressed domain (DCT, Discrete Cosine Transform) transcoding architectures have been proposed to achieve fast transcoding, in which DCT domain Inverse Motion Compensation (IMC) is the most important module to reduce computational complexity. The problem of IMC has been studied for integer-pixel precision motion vectors (MVs), and, subsequently, for half-pixel precision MVs in which extra filtering, hence, extra computation is introduced. Since most current video coding standards, such as H.263, MPEG-2, etc., use half-pixel precision MVs to achieve better quality, reducing computational complexity of IMC for half-pixel MVs is important for real time fast transcoding video streams encoded by these standards. In this paper, we propose a novel half-pixel filter for IMC, which simplifies the extract operations by integrating the interpolation and translation operations into one single step. Compared to other existing half-pixel filtering algorithms, the proposed filter does not introduce any distortion and drift errors. Experimental results demonstrate that the proposed filter achieves faster transcoding than other DCT domain transcoders, and almost the same video quality as that of pixel domain transcoders.

一种用于半像素运动向量视频流转码的新型DCT域转码器
视频转码是为异构多媒体应用提供通用多媒体访问(UMA)服务的关键技术之一。近年来,为了实现快速转码,提出了压缩域(DCT, Discrete Cosine Transform)转码架构,其中DCT域逆运动补偿(IMC)是降低计算复杂度的最重要模块。本文首先研究了整像素精度运动矢量(mv)的IMC问题,然后研究了半像素精度运动矢量(mv)的IMC问题,其中引入了额外的滤波,从而引入了额外的计算。由于目前大多数视频编码标准,如H.263、MPEG-2等,都使用半像素精度mv来获得更好的质量,因此降低半像素mv的IMC计算复杂度对于由这些标准编码的实时快速转码视频流非常重要。在本文中,我们提出了一种新的半像素IMC滤波器,它通过将插值和平移操作集成到一个步骤中来简化提取操作。与现有的半像素滤波算法相比,该算法不存在失真和漂移误差。实验结果表明,该滤波器的转码速度比其他DCT域转码器快,且视频质量与像素域转码器基本一致。
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