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Simplified DCT-lifting-based reversible lapped transforms using parallel processing of two same type lapped transforms

机译:使用两个相同类型重叠变换的并行处理,简化了基于DCT提升的可逆重叠变换

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摘要

We present a realization of reversible lapped transforms (RevLTs) with simplified implementations, which are constructed by DCT and DST matrices, adders, and bit-shifters, for lossy-to-lossless image coding in this paper. Each DCT or DST matrix is directly used to each lifting coefficient block and it is called DCT-lifting structure. The structure is obtained by considering parallel processing of two `same' type LTs and using DCT-lifting factorizations as our previous work. Furthermore, the Hadamard transform and scaling parts in the RevLTs are effectively implemented by extending 2D non-separable lifting structures derived from lifting-based lapped transform (L-LT) used for JPEG XR, the newest image coding standard. As a result, the proposed RevLTs achieve not only simplified implementations with any block size, but also comparable lossy-to-lossless image coding performance to the conventional RevLTs.
机译:我们提出了一种具有简化实现的可逆重叠变换(RevLT)的实现,该实现由DCT和DST矩阵,加法器和位移位器构成,用于本文中的无损到无损图像编码。每个DCT或DST矩阵直接用于每个提升系数块,它称为DCT提升结构。通过考虑并行处理两个“相同”类型的LT并使用DCT提升因式分解作为我们先前的工作来获得结构。此外,RevLTs中的Hadamard变换和缩放部分可以通过扩展2D不可分离的提升结构来实现,该结构是从用于最新图像编码标准JPEG XR的基于提升的重叠变换(L-LT)衍生而来的。结果,提出的RevLT不仅实现了具有任何块大小的简化实现,而且还实现了与传统RevLT相当的有损无损图像编码性能。

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