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M-Channel Fast Hartley Transform Based Integer DCT for Lossy-to-Lossless Image Coding

机译:基于M通道快速Hartley变换的整数DCT用于有损到无损图像编码

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This paper presents an M-channel (M = 2~n (n ∈ N)) integer discrete cosine transforms (IntDCTs) based on fast Hartley transform (FHT) for lossy-to-lossless image coding which has image quality scalability from lossy data to lossless data. Many IntDCTs with lifting structures have already been presented to achieve lossy-to-lossless image coding. Recently, an IntDCT based on direct-lifting of DCT/IDCT, which means direct use of DCT and inverse DCT (IDCT) to lifting blocks, has been proposed. Although the IntDCT shows more efficient coding performance than any conventional IntDCT, it entails many computational costs due to an extra information that is a key point to realize its direct-lifting structure. On the other hand, the almost conventional IntDCTs without an extra information cannot be easily expanded to a larger size than the standard size M = 8, or the conventional IntDCT should be improved for efficient coding performance even if it realizes an arbitrary size. The proposed IntDCT does not need any extra information, can be applied to size M = 2~n for arbitrary n, and shows better coding performance than the conventional IntDCTs without any extra information by applying the direct-lifting to the pre- and postprocessing block of DCT. Moreover, the proposed IntDCT is implemented with a half of the computational cost of the IntDCT based on direct-lifting of DCT/IDCT even though it shows the best coding performance.
机译:本文提出了一种基于快速Hartley变换(FHT)的M通道(M = 2〜n(n∈N))整数离散余弦变换(IntDCTs),用于有损到无损图像编码,该图像可从有损数据中进行图像质量扩展无损数据。已经提出了许多具有提升结构的IntDCT,以实现有损到无损的图像编码。最近,已经提出了基于DCT / IDCT的直接提升的IntDCT,这意味着将DCT和逆DCT(IDCT)直接用于提升块。尽管IntDCT显示出比任何常规IntDCT更高的编码性能,但是由于额外的信息是实现其直接提升结构的关键,因此它会带来许多计算成本。另一方面,几乎没有附加信息的常规IntDCT不能轻易地扩展到比标准尺寸M = 8大的尺寸,或者即使常规IntDCT实现任意尺寸,也应该对其进行改进以提高编码效率。所提出的IntDCT不需要任何额外的信息,对于任意n都可以应用于大小M = 2〜n,并且通过将直接提升应用于预处理和后处理块而显示出比常规IntDCT更好的编码性能,而无需任何额外的信息DCT。此外,即使基于DCT / IDCT的直接提升,所提出的IntDCT的计算成本也只有IntDCT的一半,即使它表现出最佳的编码性能。

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