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Transform domain inter-block interleaving schemes for robust image and video transmission in ATM networks

机译:ATM网络中用于鲁棒图像和视频传输的变换域块间交织方案

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Data interleaving schemes have proven to be an important mechanism in reducing the impact of correlated network errors on image/video transmission. Current interleaving schemes fall into two main categories: (a) schemes that interleave pixel intensity values and (b) schemes that interleave JPEG/MPEG transform blocks. The schemes in the first category suffer in terms of lower compression ratio since highly correlated information in the spatial domain is de-correlated prior to compression. The schemes in the second category interleave DCT transformed blocks. In this case, in the absence of ARQ, if a packet is lost, an entire block may be lost thus yielding poor image quality and making the error concealment task difficult. Interleaving transform coefficients is tricky and error concealment in the presence of lost coefficients is challenging. In this paper, we develop three different interleaving schemes, namely Triangular, Quadrant, and Coefficient, that interleave frequency domain transform coefficients. The transform coefficients within each block are divided into small groups and groups are interleaved with the groups from other blocks in the image, hence they are referred to as inter-block interleaving schemes. The proposed schemes differ in terms of group size. In the Triangular interleaving scheme AC coefficients in each block are divided into two triangles and interleaving is performed among triangles from different blocks. In the Quadrant interleaving scheme, coefficients in each block are divided into four quadrants and quadrants are interleaved. In the Coefficient interleaving scheme, each coefficient in a block is a group and it is interleaved with the coefficients in other blocks. The compression ratio 3 of the proposed interleaving schemes is impressive ranging from 90 to 98% of the JPEG standard compression while providing much higher robustness in the presence of correlated losses. We also propose two new variable end-of-block (VEOB) techniques, one based on the number of AC coefficients per block (VAC-EOB) and the other based on the number of bits per block (VB-EOB). Our proposed interleaving techniques combined with VEOB schemes yield significantly better compression ratios compared to JPEG (2-11%) and MPEG-2 (3-6.7%) standards while at the same time improve the resilience of the coded data in the presence of transmission errors.
机译:事实证明,数据交织方案是减少相关网络错误对图像/视频传输的影响的重要机制。当前的交织方案分为两个主要类别:(a)交织像素强度值的方案和(b)交织JPEG / MPEG变换块的方案。第一类中的方案在较低的压缩率方面受苦,因为空间域中高度相关的信息在压缩之前是不相关的。第二类中的方案交织DCT变换的块。在这种情况下,在没有ARQ的情况下,如果丢失了一个数据包,则整个数据块可能会丢失,从而产生较差的图像质量,并使错误隐藏任务变得困难。交织变换系数非常棘手,并且在丢失系数的情况下隐藏错误是具有挑战性的。在本文中,我们开发了三种不同的交织方案,即三角,象限和系数,它们交织了频域变换系数。每个块内的变换系数被分成小组,并且组与图像中其他块的组交织,因此它们被称为块间交织方案。提议的方案在组规模方面有所不同。在三角形交织方案中,每个块中的AC系数被分成两个三角形,并且在来自不同块的三角形之间执行交织。在象限交织方案中,每个块中的系数被分成四个象限,并且象限被交织。在系数交织方案中,一个块中的每个系数都是一组,并且与其他块中的系数交织。所提出的交错方案的压缩比3是JPEG标准压缩的90%到98%,令人印象深刻,同时在存在相关损失的情况下提供了更高的鲁棒性。我们还提出了两种新的可变块末尾(VEOB)技术,一种基于每个块的AC系数数(VAC-EOB),另一种基于每个块的位数(VB-EOB)。我们提出的交错技术与VEOB方案相结合,与JPEG(2-11%)和MPEG-2(3-6.7%)标准相比,压缩率显着提高,同时在存在传输的情况下提高了编码数据的弹性错误。

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