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Data compression of stereoscopic image pairs

机译:立体图像对的数据压缩

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An emerging feature of multimedia and telepresence systems is stereo imagery. Stereo images provide an enhanced sense of presence, and have been found to be operationally useful in tasks requiring remote manipulation or judgment of spatial relationships. A conventional stereo system with a single left-right pair needs twice the raw data as a monoscopic imaging system. As a result there has been increasing attention given to image compression methods specialized to stereo pairs. In this paper, the mixed-resolution coding, is a psychophysically justified technique that exploits known facts about human stereovision to code stereopairs in a subjectively acceptable manner, is used to the stereo image compression. By combining both the mixed-resolution coding and SPT(subspace projection technique)-based disparity-compensation techniques.the left image can be compressed by a wavelet-transform-based scheme independent of the right image. By performing low-resolution SPT-based disparity-compensation technique, the disparity is able to predict the low-resolution right image from the left image at a lower resolution using the disparity relation. The low-resolution images are obtained using the wavelet decomposition. At the decoder, the low-resolution right subimage is estimated using the disparity from the low-resolution left subimage. A full-sized resolution is obtained by upsampling with a factor of 4 and resonstructing with the synthesis low pass filter. We provide experimental results,that show that our proposed scheme achieves a PSNR gain of about 0.98 dB as compared to a block-based disparity compensation coding scheme, encoded at the same bit rate.
机译:多媒体和远程呈现系统的新兴功能是立体图像。立体图像提供了增强的临场感,并已发现在需要远程操纵或判断空间关系的任务中在操作上很有用。具有单对左右一对的常规立体声系统需要的原始数据是单视场成像系统的两倍。结果,人们越来越关注专用于立体声对的图像压缩方法。在本文中,混合分辨率编码是一种心理上合理的技术,该技术利用有关人类立体视觉的已知事实以主观上可接受的方式对立体对进行编码,用于立体图像压缩。通过混合使用混合分辨率编码和基于SPT(子空间投影技术)的视差补偿技术,左图像可以通过基于小波变换的方案进行压缩,而与右图像无关。通过执行基于低分辨率的基于SPT的视差补偿技术,视差能够使用视差关系从左图像以较低的分辨率预测低分辨率的右图像。使用小波分解获得低分辨率图像。在解码器处,使用来自低分辨率左子图像的视差估计低分辨率右子图像。通过以4的倍数上采样并使用合成低通滤波器进行谐振,可以获得全尺寸分辨率。我们提供的实验结果表明,与以相同比特率编码的基于块的视差补偿编码方案相比,我们提出的方案可实现约0.98 dB的PSNR增益。

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