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Two-channel nonseparable wavelets statistically matched to 2-D images

机译:统计上与二维图像匹配的两通道不可分小波

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This paper presents a new approach for the estimation of 2-channel nonseparable wavelets matched to images in the statistical sense. To estimate a matched wavelet system, first, we estimate the analysis wavelet filter of a 2-channel nonseparable filterbank using the minimum mean square error (MMSE) criterion. The MMSE criterion requires statistical characterization of the given image. Because wavelet basis expansion behaves as Karhunen-Loeve type expansion for fractional Brownian processes, we assume that the given image belongs to a 1st order or a 2nd order isotropic fractional Brownian field (IFBF). Next, we present a method for the design of a 2-channel two-dimensional finite-impulse response (FIR) biorthogonal perfect reconstruction filter-bank (PRFB) leading to the estimation of a compactly supported statistically matched wavelet. The important contribution of the paper lies in the fact that all filters are estimated from the given image itself. Several design examples are presented using the proposed theory. Because matched wavelets will have better energy compaction, performance of estimated wavelets is evaluated by computing the transform coding gain. It is seen that nonseparable matched wavelets give better coding gain as compared to nonseparable non-matched orthogonal and biorthogonal wavelets.
机译:本文提出了一种在统计意义上估计与图像匹配的2通道不可分小波的新方法。为了估计匹配的小波系统,首先,我们使用最小均方误差(MMSE)准则估计2通道不可分滤波器组的分析小波滤波器。 MMSE标准要求对给定图像进行统计表征。由于小波基展开对于分数布朗过程而言表现为Karhunen-Loeve型展开,因此我们假定给定图像属于一阶或二阶各向同性分数布朗域(IFBF)。接下来,我们提出了一种用于设计2通道二维有限冲激响应(FIR)双正交完美重构滤波器组(PRFB)的方法,从而可以估算出紧密支持的统计匹配小波。本文的重要贡献在于,所有滤波器都是根据给定图像本身估算的。使用提出的理论提出了几个设计实例。因为匹配的小波将具有更好的能量压缩,所以通过计算变换编码增益来评估估计的小波的性能。可以看出,与不可分离的非匹配正交和双正交小波相比,不可分离的匹配小波具有更好的编码增益。

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