高清电视信号的三维分频和编码

G. Schamel
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引用次数: 0

摘要

只提供摘要形式。报道了一种降低高数据率的两级编码系统。三维次采样用于创建交错源信号的基带。一种运动自适应滤波器结构将电视信号的三维频谱调整到由五阶采样模式支持的一些简化区域。将下采样信号(主信号)内插到发射机中,计算与原始信号的差值,再对差值信号进行下采样,得到误差信号。这两个信号都必须进行编码,以达到低于140 Mb/s的完整比特率。对主信号进行变换编码。对DCT系数采用一种改进的阈值编码方案。为了避免重构(移动)序列中的伪影,将系数的阈值、归一化和量化适应于局部图像内容。在经过滤波处理的空间分辨率降低的区域,对误差信号进行编码、传输并加入到主信号中,以提高图像质量。为此目的研究了树编码。用TV和HDTV序列对算法进行了仿真。
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3D-frequency splitting and coding of HDTV signals
Summary form only given. A two-stage coding system for reducing the high data rate is reported. Three-dimensional subsampling is used to create the baseband of the interlaced source signal. A motion-adaptive filter structure adjusts the three-dimensional spectrum of the television signal to some reduced region supported by the quincunx sampling pattern. By interpolating the subsampled signal (main signal) in the transmitter, calculating the difference from the original, and subsampling the difference signal again, the error signal results. Both signals have to be coded to achieve a complete bit rate of less than 140 Mb/s. Transform coding is applied to the main signal. A modified threshold-coding scheme is applied to the DCT coefficients. In order to avoid artifacts in the reconstructed (moving) sequence, threshold, normalization, and quantization of the coefficients are adapted to the local picture content. In regions where the spatial resolution has been reduced by the filtering process, the error signal is coded, transmitted and added to th main signal to improve the picture quality. Tree coding has been investigated for this purpose. Simulations of the algorithms have been performed with TV and HDTV sequences.<>
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