Bellcore, Morristown, NJ.
IEEE Trans Image Process. 1995;4(9):1269-81. doi: 10.1109/83.413171.
Develops a technique for improving the applicability of complete, nonorthogonal, multiresolution transforms to image coding. As is well known, the L(2) norm of the quantization errors is not preserved by nonorthogonal transforms, so the L(2) reconstruction error may be unacceptably large. However, given the quantizers and synthesis filters, the authors show that this artifact can be eliminated by formulating the coding problem as that of minimizing the L(2) reconstruction error over the set of possible encoded images. With this new formulation, the coding problem becomes a high-dimensional, discrete optimization problem and features a coupling between the redundancy-removing and quantization operations. A practical solution to the optimization problem is presented in the form of a multiscale relaxation algorithm, using inter- and intrascale quantization noise feedback filters. Bounds on the coding gain over the standard coding technique are derived. A simple extension of the algorithm allows for the use of a weighted L(2) error criterion and deadband (non-MMSE) quantizers. Experiments using biorthogonal spline filter banks demonstrate appreciable SNR gains over the standard coding technique, and comparable visual improvements.
提出了一种改进完全非正交多分辨率变换在图像编码中适用性的技术。众所周知,非正交变换不保持量化误差的 L(2)范数,因此 L(2)重建误差可能大得不可接受。然而,给定量化器和综合滤波器,作者表明,可以通过将编码问题表述为最小化可能的编码图像集合上的 L(2)重建误差来消除这种伪影。有了这个新的公式,编码问题就变成了一个高维的离散优化问题,并且在冗余消除和量化操作之间存在耦合。以多尺度松弛算法的形式提出了优化问题的实用解决方案,使用了层间和层内量化噪声反馈滤波器。推导了该算法相对于标准编码技术的编码增益的界。该算法的一个简单扩展允许使用加权 L(2)误差准则和死区(非 MMSE)量化器。使用双正交样条滤波器组的实验表明,与标准编码技术相比,信噪比有了明显的提高,并且视觉效果也得到了相当的改善。