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Application of SY JND Model to SPIHT LLCVD

机译:SY JND模型在SPIHT LLCVD中的应用

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摘要

The wavelet based SPIHT algorithm has recently attracted significant attentions from researchers in image coding. SPIHT maximizes PSNR (or minimize MSE) for each bit it transmitted, however, it is well known that PSNR is not a good indicator of the perceptual image fidelity. Human visual perception is more sensitive to distortions in lower frequency components than distortions in the higher frequency components. In this paper, we enhance SPIHT by introducing a process called JND_SQ, between wavelet transform and SPIHT. JND_SQ allows SPIHT to maximize perceptual fidelity instead of PSNR for each bit transmitted. We proposed a perceptual fidelity criterion called JND_PSNR based on the SY JND model, the new criterion is more consistent with human perception than PSNR. Experimental results show that JND_SPIHT outperforms SPIHT in terms of JND_PSNR. The JND_SQ process results in a large amount of zeros, which can be further utilized to improve the speed of SPIHT. Finally, JND_SQ can be turned off if the original SPIHT is desired.
机译:基于小波的SPIHT算法最近在图像编码中引起了研究人员的极大关注。 SPIHT为其传输的每个比特最大化PSNR(或最小化MSE),但是,众所周知,PSNR并不是感知图像保真度的良好指标。人类的视觉感知对低频分量的失真比高频分量的失真更敏感。在本文中,我们通过在小波变换和SPIHT之间引入一个称为JND_SQ的过程来增强SPIHT。 JND_SQ允许SPIHT对传输的每个比特最大化感知保真度而不是PSNR。我们基于SY JND模型提出了一种感知保真度准则,称为JND_PSNR,与PSNR相比,新准则更符合人的感知。实验结果表明,就JND_PSNR而言,JND_SPIHT优于SPIHT。 JND_SQ过程导致大量的零,可以进一步利用这些零来提高SPIHT的速度。最后,如果需要原始SPIHT,则可以关闭JND_SQ。

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