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Piecewise Mapping in HEVC Lossless Intra-Prediction Coding

机译:HEVC无损帧内预测编码中的分段映射

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The lossless intra-prediction coding modality of the High Efficiency Video Coding standard provides high coding performance while allowing frame-by-frame basis access to the coded data. This is of interest in many professional applications, such as medical imaging, automotive vision, and digital preservation in libraries and archives. Various improvements to lossless intra-prediction coding have been proposed recently, most of them based on sample-wise prediction using differential pulse code modulation (DPCM). Other recent proposals aim at further reducing the energy of intra-predicted residual blocks. However, the energy reduction achieved is frequently minimal due to the difficulty of correctly predicting the sign and magnitude of residual values. In this paper, we pursue a novel approach to this energy-reduction problem using piecewise mapping (pwm) functions. In particular, we analyze the range of values in residual blocks and apply accordingly a pwm function to map specific residual values to unique lower values. We encode the appropriate parameters associated with the pwm functions at the encoder, so that the corresponding inverse pwm functions at the decoder can map values back to the same residual values. These residual values are then used to reconstruct the original signal. This mapping is, therefore, reversible and introduces no losses. We evaluate the pwm functions on $4times 4$ residual blocks computed after DPCM-based prediction for lossless coding of a variety of camera-captured and screen content sequences. Evaluation results show that the pwm functions can attain the maximum bit-rate reductions of 5.54% and 28.33% for screen content material compared with DPCM-based and block-wise intra-prediction, respectively. Compared with intra-block copy, piecewise mapping can attain the maximum bit-rate reductions of 11.48% for a camera-captured material.
机译:高效视频编码标准的无损帧内预测编码模式可提供高编码性能,同时允许逐帧访问编码数据。这在许多专业应用中都很有趣,例如医学成像,汽车视觉以及图书馆和档案馆中的数字保存。最近已经提出了对无损帧内预测编码的各种改进,其中大多数基于使用差分脉冲编码调制(DPCM)的逐样本预测。最近的其他提议旨在进一步降低帧内预测残差块的能量。然而,由于难以正确预测残值的符号和大小,因此实现的能量减少通常最小。在本文中,我们使用分段映射(pwm)函数对这种节能问题寻求一种新颖的方法。特别地,我们分析残差块中值的范围,并相应地应用pwm函数将特定残差值映射到唯一的较低值。我们在编码器上编码与pwm函数相关的适当参数,以便在解码器处相应的逆pwm函数可以将值映射回相同的残差值。然后将这些残差值用于重建原始信号。因此,这种映射是可逆的,不会造成任何损失。我们对基于DPCM的预测进行计算后的$ 4×4 $残差块上的pwm函数进行评估,以对各种摄像头捕获和屏幕内容序列进行无损编码。评估结果表明,与基于DPCM的逐帧内预测相比,屏幕内容材料的pwm函数可实现的最大比特率降低分别为5.54%和28.33%。与块内复制相比,分段映射可以将相机捕获的材料的最大位速率降低11.48%。

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