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An HEVC-Compliant Perceptual Video Coding Scheme Based on JND Models for Variable Block-Sized Transform Kernels

机译:基于JND模型的HEVC感知感知视频编码方案,用于可变块大小变换核

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摘要

In this paper, a High Efficiency Video Coding (HEVC)-compliant perceptual video coding (PVC) scheme is introduced based on just-noticeable difference (JND) models in both transform and pixel domains. We adopt an existing pixel-domain JND model for the transform skip mode of HEVC and propose a transform-domain JND model for the transform nonskip modes of HEVC. The proposed transform-domain JND model is designed by considering the spatial JND characteristics such as contrast sensitivity, luminance adaptation, and contrast masking effects as well as by considering the summation effects of variable block-sized transforms in HEVC. A temporal JND model is additionally incorporated into the proposed transform-domain JND model to further reduce perceptual redundancy. To incorporate the transform- and pixel-domain JND models into the encoding process in an HEVC-compliant manner, the transform coefficients and residues are suppressed in harmonization with the transform/quantization process and the quantization-only process of HEVC, respectively. To make the JND-based suppression effective, a distortion compensation factor is also proposed to reflect the perceptual distortion in the rate-distortion optimization-based encoding process. Based on subjective quality assessments of the encoded bit streams of test sequences, the proposed HEVC-compliant PVC scheme yields remarkable bitrate reductions of a maximum 49.10% and an average 16.10% with negligible subjective quality loss, compared with an HEVC reference software HEVC test model (HM 11.0). In addition, the proposed HEVC-compliant PVC scheme increases the encoding complexity of HM 11.0 only by an average of 11.25%.
机译:本文提出了一种基于高效视频编码(HEVC)的感知视频编码(PVC)方案,该方案基于变换域和像素域中的仅差值(JND)模型。针对HEVC的变换跳过模式,我们采用了现有的像素域JND模型,并针对HEVC的变换非跳过模式提出了变换域JND模型。提出的变换域JND模型是通过考虑空间JND特性(例如对比度灵敏度,亮度适应和对比度掩盖效果)以及HEVC中可变块大小变换的求和效果而设计的。将时间JND模型另外合并到所提出的变换域JND模型中,以进一步减少感知冗余。为了以符合HEVC的方式将变换域和像素域JND模型合并到编码过程中,分别与HEVC的变换/量化过程和仅量化过程相协调地抑制了变换系数和残差。为了使基于JND的抑制有效,还提出了一种失真补偿因子,以反映基于速率失真优化的编码过程中的感知失真。基于对测试序列编码比特流的主观质量评估,与HEVC参考软件HEVC测试模型相比,拟议的符合HEVC的PVC方案可产生显着的比特率降低,最大降低了49.10%,平均降低了16.10%,主观质量损失可忽略不计(HM 11.0)。另外,提出的符合HEVC的PVC方案仅将HM 11.0的编码复杂度平均提高了11.25%。

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