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Denoising Method for Passive Photon Counting Images Based on Block-Matching 3D Filter and Non-Subsampled Contourlet Transform

机译:基于块匹配3D滤波器和非二次采样Contourlet变换的无源光子计数图像降噪方法

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摘要

Multi-pixel photon counting detectors can produce images in low-light environments based on passive photon counting technology. However, the resulting images suffer from problems such as low contrast, low brightness, and some unknown noise distribution. To achieve a better visual effect, this paper describes a denoising and enhancement method based on a block-matching 3D filter and a non-subsampled contourlet transform (NSCT). First, the NSCT was applied to the original image and histogram-equalized image to obtain the sub-band low- and high-frequency coefficients. Regional energy and scale correlation rules were used to determine the respective coefficients. Adaptive single-scale retinex enhancement was applied to the low-frequency components to improve the image quality. The high-frequency sub-bands whose line features were best preserved were selected and processed using a symbol function and the Bayes-shrink threshold. After applying the inverse transform, the fused photon counting image was subjected to an improved block-matching 3D filter, significantly reducing the operation time. The final result from the proposed method was superior to those of comparative methods in terms of several objective evaluation indices and exhibited good visual effects and details from the objective impression.
机译:多像素光子计数检测器可以基于无源光子计数技术在弱光环境下生成图像。然而,所得到的图像遭受诸如低对比度,低亮度以及一些未知的噪声分布的问题。为了获得更好的视觉效果,本文介绍了一种基于块匹配3D滤波器和非下采样Contourlet变换(NSCT)的降噪和增强方法。首先,将NSCT应用于原始图像和经直方图均衡的图像,以获得子带的低频和高频系数。使用区域能量和规模相关性规则来确定各个系数。自适应单尺度retinex增强应用于低频分量,以提高图像质量。使用符号函数和贝叶斯收缩阈值选择并处理了保留了最佳线特征的高频子带。应用逆变换后,对融合的光子计数图像进行改进的块匹配3D滤波器,从而显着减少了操作时间。所提出的方法的最终结果在几个客观评价指标方面优于比较方法,并且在客观印象方面表现出良好的视觉效果和细节。

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