Noise-induced contrast enhancement of dark images using non-dynamic stochastic resonance

R. K. Jha, R. Chouhan, P. Biswas
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引用次数: 36

Abstract

In this paper, a nonlinear non-dynamic stochastic resonance-based technique has been proposed for enhancement of dark and low contrast images. A low contrast image is treated as a subthreshold signal and noise-enhanced signal processing is applied to improve its contrast. The proposed technique uniquely utilizes addition of external noise to neutralize the effect of internal noise (due to insufficient illumination) of a low contrast image. Random noise is added repeatedly to an image and is successively hard-thresholded followed by overall averaging. By varying the noise intensities, noise induced resonance is obtained at a particular optimum noise intensity. Performance of the proposed technique has been investigated for four types of noise distributions - gaussian, uniform, poisson and gamma. Quantitative evaluation of their performances have been done in terms of contrast enhancement factor, color enhancement and perceptual quality measure. Comparison with other existing spatial domain techniques shows that the proposed technique gives remarkable enhancement while ascertaining good perceptual quality.
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噪声诱导的非动态随机共振暗图像对比度增强
本文提出了一种基于非线性非动态随机共振的图像增强技术。将低对比度图像作为亚阈值信号处理,并采用噪声增强信号处理来提高其对比度。所提出的技术独特地利用外部噪声的添加来抵消低对比度图像的内部噪声(由于照明不足)的影响。随机噪声被反复地添加到图像中,并依次进行硬阈值处理,然后进行总体平均。通过改变噪声强度,在特定的最佳噪声强度下获得噪声诱发共振。研究了四种类型的噪声分布(高斯分布、均匀分布、泊松分布和伽玛分布)下该技术的性能。从对比度增强系数、色彩增强和感知质量测度等方面对其性能进行了定量评价。与其他空间域技术的比较表明,该技术在获得良好的感知质量的同时,具有显著的增强效果。
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