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Spatial scalable video coding using a combined subband-DCT approach

机译:使用组合子带-DCT方法的空间可伸缩视频编码

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A combined subband-DCT approach for spatial scalable video coding is presented. The high-resolution input signal is decomposed into four spatial subband signals. The low-frequency subband is used as the low-resolution signal and is separately coded in the base-layer bitstream, and the high-frequency subband signals are coded in the enhancement-layer bitstream. The low-resolution signal is reconstructed from the base-layer bitstream and the high-resolution signal is reconstructed using both the base- and the enhancement-layer bitstream. Similar to MPEG, DCT-based hybrid coding techniques are applied for the coding of the subband signals, but an improved motion-compensated prediction is used for the low-resolution signal. Additionally, SNR scalability is introduced to allow a flexible bit allocation for the base and the enhancement layer. Experimental results at a bit rate of 6 Mbit/s show that the reference coder MPEG spatial scalable profile (SSP) leads to a loss of more than 2.2-dB peak signal-to-noise ratio (PSNR) compared with nonscalable MPEG-2 coding at the same bit rate, whereas the proposed combined subband-DCT scheme is able to achieve a decrease of less than 0.4 dB in PSNR.
机译:提出了用于空间可伸缩视频编码的组合子带-DCT方法。高分辨率输入信号被分解为四个空间子带信号。低频子带用作低分辨率信号,并在基础层比特流中分别编码,而高频子带信号在增强层比特流中编码。从基本层比特流中重建低分辨率信号,并使用基本层和增强层比特流来重建高分辨率信号。与MPEG相似,基于DCT的混合编码技术应用于子带信号的编码,但对低分辨率信号使用改进的运动补偿预测。另外,引入了SNR可伸缩性以允许为基础层和增强层灵活地分配比特。以6 Mbit / s的比特率进行的实验结果表明,与不可缩放的MPEG-2编码相比,参考编码器MPEG空间可扩展配置文件(SSP)导致的损失超过2.2 dB峰值信噪比(PSNR)。所提出的组合子带-DCT方案能够在PSNR上实现小于0.4 dB的降低。

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