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基于人眼视觉系统亮度和对比度掩蔽特性的非线性直接多尺度图像增强。

Non-linear direct multi-scale image enhancement based on the luminance and contrast masking characteristics of the human visual system.

机构信息

Department of Electrical and Computer Engineering, Tufts University, Medford, MA 02155, USA.

出版信息

IEEE Trans Image Process. 2013 Sep;22(9):3549-61. doi: 10.1109/TIP.2013.2262287. Epub 2013 May 13.

Abstract

Image enhancement is a crucial pre-processing step for various image processing applications and vision systems. Many enhancement algorithms have been proposed based on different sets of criteria. However, a direct multi-scale image enhancement algorithm capable of independently and/or simultaneously providing adequate contrast enhancement, tonal rendition, dynamic range compression, and accurate edge preservation in a controlled manner has yet to be produced. In this paper, a multi-scale image enhancement algorithm based on a new parametric contrast measure is presented. The parametric contrast measure incorporates not only the luminance masking characteristic, but also the contrast masking characteristic of the human visual system. The formulation of the contrast measure can be adapted for any multi-resolution decomposition scheme in order to yield new human visual system-inspired multi-scale transforms. In this article, it is exemplified using the Laplacian pyramid, discrete wavelet transform, stationary wavelet transform, and dual-tree complex wavelet transform. Consequently, the proposed enhancement procedure is developed. The advantages of the proposed method include: 1) the integration of both the luminance and contrast masking phenomena; 2) the extension of non-linear mapping schemes to human visual system inspired multi-scale contrast coefficients; 3) the extension of human visual system-based image enhancement approaches to the stationary and dual-tree complex wavelet transforms, and a direct means of; 4) adjusting overall brightness; and 5) achieving dynamic range compression for image enhancement within a direct multi-scale enhancement framework. Experimental results demonstrate the ability of the proposed algorithm to achieve simultaneous local and global enhancements.

摘要

图像增强是各种图像处理应用和视觉系统的关键预处理步骤。已经提出了许多基于不同标准集的增强算法。然而,还没有产生一种能够以可控的方式独立地和/或同时提供足够的对比度增强、色调渲染、动态范围压缩和精确的边缘保持的直接多尺度图像增强算法。在本文中,提出了一种基于新参数对比度度量的多尺度图像增强算法。参数对比度度量不仅包含亮度掩蔽特性,还包含人类视觉系统的对比度掩蔽特性。对比度度量的公式可以适用于任何多分辨率分解方案,以产生新的基于人类视觉系统的多尺度变换。在本文中,使用拉普拉斯金字塔、离散小波变换、平稳小波变换和双树复小波变换进行了说明。因此,提出了增强过程。所提出方法的优点包括:1)整合亮度和对比度掩蔽现象;2)将非线性映射方案扩展到基于人类视觉系统的多尺度对比度系数;3)将基于人类视觉系统的图像增强方法扩展到平稳和双树复小波变换,并提供直接调整整体亮度的方法;以及 4)实现动态范围压缩,以在直接多尺度增强框架内进行图像增强。实验结果证明了所提出算法实现局部和全局增强的能力。

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