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GLAGC: Adaptive Dual-Gamma Function for Image Illumination Perception and Correction in the Wavelet Domain

机译:GLAGC:自适应双伽马功能用于图像照明感知和小波域中的校正

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摘要

Low-contrast or uneven illumination in real-world images will cause a loss of details and increase the difficulty of pattern recognition. An automatic image illumination perception and adaptive correction algorithm, termed as GLAGC, is proposed in this paper. Based on Retinex theory, the illumination of an image is extracted through the discrete wavelet transform. Two features that characterize the image illuminance are creatively designed. The first feature is the spatial luminance distribution feature, which is applied to the adaptive gamma correction of local uneven lighting. The other feature is the global statistical luminance feature. Through a training set containing images with various illuminance conditions, the relationship between the image exposure level and the feature is estimated under the maximum entropy criterion. It is used to perform adaptive gamma correction on global low illumination. Moreover, smoothness preservation is performed in the high-frequency subband to preserve edge smoothness. To eliminate low-illumination noise after wavelet reconstruction, the adaptive stabilization factor is derived. Experimental results demonstrate the effectiveness of the proposed algorithm. By comparison, the proposed method yields comparable or better results than the state-of-art methods in terms of efficiency and quality.
机译:实际图像中的低对比度或不均匀的照明将导致细节丢失并增加模式识别的难度。本文提出了一种自动图像照明感知和称为Glagc的自适应校正算法。基于Retinex理论,通过离散小波变换提取图像的照明。创造性地设计了两个特征,其表征了图像照度。第一特征是空间亮度分布特征,其应用于局部不均匀照明的自适应伽马校正。另一个功能是全局统计亮度特征。通过包含具有各种照度条件的图像的训练集,在最大熵标准下估计图像曝光水平与特征之间的关系。它用于对全局低照明进行自适应伽马校正。此外,在高频子带中执行平滑度保存以保持边缘平滑度。为了消除小波重建后的低照明噪声,推导出自适应稳定因子。实验结果表明了该算法的有效性。通过比较,所提出的方法在效率和质量方面比现有技术方法产生相当或更好的结果。

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