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Fast Interframe mode decision algorithm based on mode mapping and MB activity for MPEG-2 to H.264/AVC transcoding

机译:基于模式映射和MB活动的MPEG-2至H.264 / AVC转码的快速帧间模式决策算法

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Recently the latest video coding standard H.264/AVC is widely used for the mobile and low bitrate video codec in the various multimedia terminals. On the other hand, the MPEG-2 MP@HL codec has become the center of digital video contents since it is the standard codec for the Digital TV (DTV). To provide the bridge between the contents in MPEG-2 and mobile terminals, the transcoding of MPEG-2 contents into H.264/AVC format is an inevitable technology in the digital video market. The main bottleneck in the process lies in the computational complexity. In H.264/AVC, the variable block size (VBS) mode decision (MD) is used in the Interframe for the improved performance in the motion compensated prediction. For the macroblock (MB) which cannot be accurately predicted with one motion vector (MV), it is partitioned into smaller blocks and predicted with different MVs. In addition, SKIP and Intra modes are also permitted in the Interframe MD of H.264/AVC to further ameliorate the encoding performance. With the VBS MD technology, the Inter prediction accuracy can be improved significantly. However, the incidental side-effect is the high computational complexity. In this paper, we propose a fast Interframe MD algorithm for MPEG-2 to H.264/AVC transcoding. The relationships between SKIP and Intra modes are detected at first to map these two kinds of modes directly from MPEG-2 to H.264/AVC. And then the MB activity will be scaled by the residual DCT energy obtained from the MPEG-2 decoding process to estimate the block sizes of the MB mode for H.264/AVC Interframe MD. In our proposed method, the original redundant candidate modes can be eliminated effectively, resulting in the reduction of the computational complexity. It can reduce about 85% Rate-to-Distortion Cost (RDCost) computing and 45% entire processing time compared with the well-known cascaded transcoder while maintaining the video quality.
机译:最近,最新的视频编码标准H.264 / AVC被广泛用于各种多媒体终端中的移动和低比特率视频编解码器。另一方面,由于MPEG-2 MP @ HL编解码器是数字电视(DTV)的标准编解码器,因此它已成为数字视频内容的中心。为了在MPEG-2内容与移动终端之间架起桥梁,将MPEG-2内容转码为H.264 / AVC格式是数字视频市场中不可避免的技术。该过程中的主要瓶颈在于计算复杂性。在H.264 / AVC中,可变帧大小(VBS)模式决策(MD)用于帧间,以提高运动补偿预测的性能。对于不能用一个运动矢量(MV)准确预测的宏块(MB),将其划分为较小的块,并用不同的MVs进行预测。另外,在H.264 / AVC的帧间MD中也允许使用SKIP和Intra模式,以进一步改善编码性能。使用VBS MD技术,可以显着提高帧间预测精度。但是,附带的副作用是计算复杂度高。在本文中,我们提出了一种用于MPEG-2到H.264 / AVC转码的快速帧间MD算法。首先检测SKIP和Intra模式之间的关系,以将这两种模式直接从MPEG-2映射到H.264 / AVC。然后,MB活动将通过从MPEG-2解码过程获得的残留DCT能量进行缩放,以估计H.264 / AVC帧间MD的MB模式的块大小。在我们提出的方法中,可以有效地消除原始的冗余候选模式,从而降低了计算复杂度。与众所周知的级联转码器相比,它可以减少大约85%的失真率成本(RDCost)计算和45%的整个处理时间,同时保持视频质量。

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