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A Cross-Resolution Leaky Prediction Scheme for In-Band Wavelet Video Coding With Spatial Scalability

机译:具有空间可伸缩性的带内小波视频编码的交叉分辨率泄漏预测方案

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In most existing in-band wavelet video coding schemes, over-complete wavelet transform is used for the motion-compensated temporal filtering (MCTF) of each spatial subband. It can overcome the shift-variance of critical sampling wavelet transform and improve the coding efficiency of the in-band scheme. However, a dilemma exists in the current implementations of in-band MCTF (IBMCTF), which is whether or not to exploit the spatial highpass subbands in motion compensation of the spatial lowpass subband. The absence of the spatial highpass subbands will result in significant quality loss in the reconstructed full-resolution video, whereas the presence of the spatial highpass subbands may bring serious mismatch error in the decoded low-resolution video since the corresponding highpass subbands may be unavailable at the decoder. In this paper, we first analyze the mismatch error propagation in decoding the low-resolution video. Based on our analysis, we then propose a frame-based cross-resolution leaky prediction scheme for IBMCTF. It can make a good tradeoff between alleviating the low-resolution mismatch and improving the full-resolution coding efficiency. Experimental results show that the proposed scheme can dramatically reduce the mismatch error by 0.3-2.5 dB for low resolution, while the performance loss is marginal for high resolution.
机译:在大多数现有的带内小波视频编码方案中,过度完成的小波变换用于每个空间子带的运动补偿时间滤波(MCTF)。它可以克服临界采样小波变换的位移方差,提高带内方案的编码效率。但是,在带内MCTF(IBMCTF)的当前实现中存在一个难题,即是否在空间低通子带的运动补偿中利用空间高通子带。空间高通子带的缺失将导致重构的全分辨率视频出现严重的质量损失,而空间高通子带的存在可能会在解码后的低分辨率视频中带来严重的失配误差,因为相应的高通子带可能在解码器。在本文中,我们首先分析了低分辨率视频解码中的失配误差传播。根据我们的分析,我们然后为IBMCTF提出了基于帧的跨分辨率泄漏预测方案。可以在减轻低分辨率失配和提高全分辨率编码效率之间做出很好的权衡。实验结果表明,对于低分辨率,该方案可以显着降低失配误差0.3-2.5 dB,而对于高分辨率,性能损失则很小。

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