School of Information and Communication Engineering, North University of China, Taiyuan, China.
State Key Laboratory of Dynamic Testing Technology, North University of China, Taiyuan, China.
J Xray Sci Technol. 2024;32(4):1061-1077. doi: 10.3233/XST-240045.
Recently, X-rays have been widely used to detect complex structural workpieces. Due to the uneven thickness of the workpiece and the high dynamic range of the X-ray image itself, the detailed internal structure of the workpiece cannot be clearly displayed.
To solve this problem, we propose an image enhancement algorithm based on a multi-scale local edge-preserving filter.
Firstly, the global brightness of the image is enhanced through logarithmic transformation. Then, to enhance the local contrast, we propose utilizing the gradient decay function based on fuzzy entropy to process the gradient and then incorporate the gradient into the energy function of the local edge-preserving filter (LEP) as a constraint term. Finally, multiple base layers and detail layers are obtained through filtering multi-scale decomposition. All detail layers are enhanced and fused using S-curve mapping to improve contrast further.
This method is competitive in both quantitative indices and visual perception quality.
The experimental results demonstrate that the proposed method significantly enhances various complex workpieces and is highly efficient.
近年来,X 射线已被广泛应用于检测复杂结构的工件。由于工件的厚度不均匀和 X 射线图像本身的高动态范围,工件的详细内部结构无法清晰显示。
为了解决这个问题,我们提出了一种基于多尺度局部边缘保持滤波器的图像增强算法。
首先,通过对数变换增强图像的整体亮度。然后,为了增强局部对比度,我们提出利用基于模糊熵的梯度衰减函数来处理梯度,然后将梯度作为约束项合并到局部边缘保持滤波器(LEP)的能量函数中。最后,通过多尺度分解得到多个基础层和细节层。使用 S 形曲线映射对所有细节层进行增强和融合,以进一步提高对比度。
该方法在定量指标和视觉感知质量方面都具有竞争力。
实验结果表明,该方法能够显著增强各种复杂的工件,并且效率很高。