Properties of Entropy Coding for 3D DCT Video Compression Method

T. Fryza
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引用次数: 2

Abstract

This contribution presents a basic structure of video compression coder based on Three Dimensional Discrete Cosine Transform (3D DCT). Mainly, this paper deals with a optimal method of forming the 3D DCT frequency coefficients into output bit stream. It is well known the number of non zero frequency coefficients depends on the video sequence character. The sequence with a slow motion evokes a low number of coefficients and vice versa the dynamic sequence produces a high number of frequency coefficients, thus the compress ratio of an encoded sequence tends to be low. It could be proved the compress properties of 3D DCT encoder do not depends only on scene character but can be improved by the entropy coder and by the way how the coefficients are scanned. The scanning order optimized for the 3D DCT and a content of the dictionary for Huffman coder is proposed in this paper.
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三维DCT视频压缩中熵编码的性质
提出了一种基于三维离散余弦变换(3D DCT)的视频压缩编码器的基本结构。本文主要研究了一种将三维DCT频率系数形成输出比特流的优化方法。众所周知,非零频率系数的个数取决于视频序列的特征。具有慢动作的序列引起的系数数量较少,反之,动态序列产生的频率系数数量较多,因此编码序列的压缩比往往较低。结果表明,三维DCT编码器的压缩性能不仅取决于场景特征,而且可以通过熵编码器和扫描系数的方式来提高压缩性能。提出了三维DCT的扫描顺序优化方案和霍夫曼编码器的字典内容。
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