Whole-frame Error concealment with improved backward motion estimation for H.264 decoders

Su Shi-Chen, Liu Feng, Xue Ping
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引用次数: 5

Abstract

H.264 video compression standard is widely used in video transmission for telecommunications field, with a higher compression ratio and excellent network adaptability. But it also decreases the performance in anti-interference capabilities. More than one frame pictures of encoding data is stored in a data packet, once the data packet occur errors in transmission, the whole frame image is completely lost, and the next several frames can not be decoded well . Therefore, we must take the decoder error conceal technology to improve the ability of error resilient. This paper presents an error conceal method for whole-frame loss by using improved backward motion estimation. More precise quarter-pixel motion estimation to conceal the un-mapped pixel from previous correct decoded frame to current damaged frame is used to improve the quality of reconstructed frame, and spatial conceal method of distance-weighted average method is used to reduce the blocking-effect. Experiment results show it is effective.
基于改进后向运动估计的H.264解码器全帧错误隐藏
H.264视频压缩标准广泛应用于电信领域的视频传输,具有较高的压缩比和良好的网络适应性。但同时也降低了系统的抗干扰能力。编码数据的多帧图像存储在一个数据包中,一旦数据包在传输过程中出现错误,整帧图像就完全丢失,接下来的几帧就不能很好地解码。因此,必须采用解码器错误隐藏技术来提高解码器的容错能力。提出了一种基于改进后向运动估计的全帧丢失误差隐藏方法。采用更精确的四分之一像素运动估计,将之前正确解码的帧中未映射的像素隐藏到当前损坏的帧中,以提高重构帧的质量,并采用距离加权平均法的空间隐藏方法来减少阻塞效应。实验结果表明,该方法是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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