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Signal Adaptive Processing in MPEG-2 Decoders with Embedded Resizing for Interlaced Video

机译:具有隔行视频嵌入大小调整功能的MPEG-2解码器中的信号自适应处理

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Video decoding at reduced resolution with resizing embedded in the decoding loop saves computational resources such as memory, memory bandwidth and CPU cycles. Key to such embedded resizing is proper filtering/scaling of DCT data, and motion compensation at the reduced resolution. Although MPEG-2 video decoding with embedded resizing has been investigated in the past, little work has been reported on solving problems associated with interlaced video undergoing decoding with embedded resizing. In particular, annoying artifacts may occur in moving areas of interlaced video due to improper scaling or motion compensation. In this paper, we introduce the notion of the Local Interlacing Property for interlaced moving areas and propose algorithms to detect and process data with the Local Interlacing Property properly in the context of decoding with embedded resizing. Specifically, we demonstrate that 1) vertical high frequency in interlaced moving areas should be preserved during downscaling, and 2) phase shift must be added for motion compensation in interlaced moving areas under certain circumstances. Experimental results show that our method effectively removes artifacts in interlaced moving areas, making MPEG-2 video decoding with embedded resizing a practical tradeoff for interlaced video.
机译:以降低的分辨率进行视频解码,并在解码环路中嵌入调整大小,从而节省了计算资源,例如内存,内存带宽和CPU周期。这种嵌入式调整大小的关键是对DCT数据进行正确的过滤/缩放,以及以降低的分辨率进行运动补偿。尽管过去已经对具有嵌入式调整大小的MPEG-2视频解码进行了研究,但是关于解决与经过嵌入式调整大小的解码的隔行视频有关的问题的报道很少。特别地,由于不适当的缩放或运动补偿,可能在隔行视频的运动区域中出现烦人的伪像。在本文中,我们介绍了隔行运动区域的局部隔行属性的概念,并提出了在具有嵌入式调整大小的解码环境中正确地检测和处理具有局部隔行属性的数据的算法。具体来说,我们证明了1)在缩小比例过程中应保留隔行移动区域中的垂直高频,并且2)在某些情况下必须添加相移以在隔行移动区域中进行运动补偿。实验结果表明,我们的方法有效地消除了隔行扫描运动区域中的伪影,使具有嵌入式调整大小的MPEG-2视频解码成为隔行扫描视频的实用折衷。

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