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基于可逆元胞自动机的可分辨图像编码。

Resolution scalable image coding with reversible cellular automata.

出版信息

IEEE Trans Image Process. 2011 May;20(5):1461-8. doi: 10.1109/TIP.2010.2090531. Epub 2010 Nov 1.

Abstract

In a resolution scalable image coding algorithm, a multiresolution representation of the data is often obtained using a linear filter bank. Reversible cellular automata have been recently proposed as simpler, nonlinear filter banks that produce a similar representation. The original image is decomposed into four subbands, such that one of them retains most of the features of the original image at a reduced scale. In this paper, we discuss the utilization of reversible cellular automata and arithmetic coding for scalable compression of binary and grayscale images. In the binary case, the proposed algorithm that uses simple local rules compares well with the JBIG compression standard, in particular for images where the foreground is made of a simple connected region. For complex images, more efficient local rules based upon the lifting principle have been designed. They provide compression performances very close to or even better than JBIG, depending upon the image characteristics. In the grayscale case, and in particular for smooth images such as depth maps, the proposed algorithm outperforms both the JBIG and the JPEG2000 standards under most coding conditions.

摘要

在一种可分级图像编码算法中,通常使用线性滤波器组来获得数据的多分辨率表示。最近提出了可逆元胞自动机作为更简单的非线性滤波器组,它们产生相似的表示。原始图像被分解为四个子带,其中一个在降低的尺度下保留了原始图像的大部分特征。在本文中,我们讨论了可逆元胞自动机和算术编码在二进制和灰度图像的可分级压缩中的应用。在二进制情况下,使用简单局部规则的所提出的算法与 JBIG 压缩标准相比表现良好,特别是对于前景由简单连通区域组成的图像。对于复杂的图像,基于提升原理的更有效的局部规则已经被设计出来。它们提供的压缩性能非常接近或甚至优于 JBIG,这取决于图像的特征。在灰度情况下,特别是对于诸如深度图之类的平滑图像,在所提出的算法在大多数编码条件下都优于 JBIG 和 JPEG2000 标准。

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