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Lossy and lossless compression of MERIS hyperspectral images with exogenous quasi optimal spectral transforms

机译:利用外源准最优光谱变换的MERIS高光谱图像的有损和无损压缩

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摘要

Our research focuses on reducing complexity of hyperspectral image codecs based on transform and/or subband coding, so they can be processed on-board a satellite. It is wellknown that the Karhunen Loeve transform (KLT) can be sub-optimal for non Gaussian data. However, it is generally recommended as the best calculable coding transform in practice. Now, for a compression scheme compatible with both the JPEG2000 Part2 standard and the CCSDS recommendations for onboard satellite image compression, the concept and computation of optimal spectral transforms (OST), at high bit-rates, were carried out, under low restrictive hypotheses. These linear transforms are optimal for reducing spectral redundancies of multior hyper-spectral images, when the spatial redundancies are reduced with a fixed 2-D discrete wavelet transform. The problem of OST is their heavy computational cost. In this paper we present the performances in coding of a quasi optimal spectral transform, called exogenous OrthOST, obtained by learning an orthogonal OST on a sample of hyperspectral images from the spectrometer MERIS. Moreover, we compute an integer variant of OrthOST for lossless compression. The performances are compared to the ones of the KLT in both lossy and lossless compressions. We observe good performances of the exogenous OrthOST.
机译:我们的研究重点在于降低基于变换和/或子带编码的高光谱图像编解码器的复杂度,因此可以在卫星上对其进行处理。众所周知,对于非高斯数据,Karhunen Loeve变换(KLT)可能不是最佳的。但是,通常建议将其作为实践中最佳的可计算编码转换。现在,对于兼容JPEG2000 Part2标准和CCSDS建议的机载卫星图像压缩的压缩方案,在低限制性假设下以高比特率进行了最佳频谱变换(OST)的概念和计算。当使用固定的二维离散小波变换来减少空间冗余时,这些线性变换对于减少多光谱或高光谱图像的光谱冗余是最佳的。 OST的问题是它们的计算量很大。在本文中,我们介绍了通过学习来自光谱仪MERIS的高光谱图像样本上的正交OST获得的准最优光谱变换(称为外源OrthOST)的编码性能。此外,我们计算OrthOST的整数变体以进行无损压缩。在有损和无损压缩方面,将性能与KLT的性能进行了比较。我们观察到外源OrthOST的良好性能。

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