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Optimal transforms for multispectral and multilayer image coding

机译:多光谱和多层图像编码的最佳变换

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Multispectral images are composed of a series of images at differing optical wavelengths. Since these images can be quite large, they invite efficient source coding schemes for reducing storage and transmission requirements. Because multispectral images include a third (spectral) dimension with nonstationary behavior, these multilayer data sets require specialized coding techniques. The authors develop both a theory and specific methods for performing optimal transform coding of multispectral images. The theory is based on the assumption that a multispectral image may be modeled as a set of jointly stationary Gaussian random processes. Therefore, the methods may be applied to any multilayer data set which meets this assumption. Although the authors do not assume the autocorrelation has a separable form, they show that the optimal transform for coding has a partially separable structure. In particular, they prove that a coding scheme consisting of a frequency transform within each layer followed by a separate KL transform across the layers at each spatial frequency is asymptotically optimal as the block size becomes large. Two simplifications of this method are also shown to be asymptotically optimal if the data can be assumed to satisfy additional constraints. The proposed coding techniques are then implemented using subband filtering methods, and the various algorithms are tested on multispectral images to determine their relative performance characteristics.
机译:多光谱图像由一系列不同光学波长的图像组成。由于这些图像可能很大,因此它们邀请有效的源编码方案来减少存储和传输要求。因为多光谱图像包括具有非平稳行为的第三(光谱)维,所以这些多层数据集需要专门的编码技术。作者开发了用于执行多光谱图像的最佳变换编码的理论和特定方法。该理论基于这样的假设:可以将多光谱图像建模为一组联合固定的高斯随机过程。因此,该方法可以应用于满足该假设的任何多层数据集。尽管作者并不认为自相关具有可分离的形式,但他们表明,编码的最佳变换具有部分可分离的结构。特别地,他们证明,随着块大小变大,由每个层内的频率变换,然后以每个空间频率跨层的单独KL变换组成的编码方案在渐近最优。如果可以假定数据满足其他约束条件,则该方法的两种简化方法也被证明是渐近最优的。然后,使用子带滤波方法实施所提出的编码技术,并在多光谱图像上测试各种算法以确定其相对性能特征。

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