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An Approach to Improve the Quality of Infrared Images of Vein-Patterns

机译:一种提高静脉纹红外图像质量的方法

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摘要

This study develops an approach to improve the quality of infrared (IR) images of vein-patterns, which usually have noise, low contrast, low brightness and small objects of interest, thus requiring preprocessing to improve their quality. The main characteristics of the proposed approach are that no prior knowledge about the IR image is necessary and no parameters must be preset. Two main goals are sought: impulse noise reduction and adaptive contrast enhancement technologies. In our study, a fast median-based filter (FMBF) is developed as a noise reduction method. It is based on an IR imaging mechanism to detect the noisy pixels and on a modified median-based filter to remove the noisy pixels in IR images. FMBF has the advantage of a low computation load. In addition, FMBF can retain reasonably good edges and texture information when the size of the filter window increases. The most important advantage is that the peak signal-to-noise ratio (PSNR) caused by FMBF is higher than the PSNR caused by the median filter. A hybrid cumulative histogram equalization (HCHE) is proposed for adaptive contrast enhancement. HCHE can automatically generate a hybrid cumulative histogram (HCH) based on two different pieces of information about the image histogram. HCHE can improve the enhancement effect on hot objects rather than background. The experimental results are addressed and demonstrate that the proposed approach is feasible for use as an effective and adaptive process for enhancing the quality of IR vein-pattern images.
机译:这项研究开发了一种方法来改善静脉图案的红外(IR)图像质量,该图像通常具有噪声,低对比度,低亮度和感兴趣的小物体,因此需要进行预处理以提高其质量。所提出的方法的主要特征是不需要关于红外图像的先验知识,也不需要预先设置参数。寻求两个主要目标:脉冲噪声降低和自适应对比度增强技术。在我们的研究中,开发了一种基于快速中值的滤波器(FMBF)作为降噪方法。它基于IR成像机制来检测噪点像素,并基于经过改进的基于中值的滤波器来消除IR图像中的噪点像素。 FMBF具有计算负载低的优点。另外,当滤镜窗口的尺寸增加时,FMBF可以保留相当好的边缘和纹理信息。最重要的优点是,由FMBF引起的峰值信噪比(PSNR)高于由中值滤波器引起的PSNR。提出了一种混合累积直方图均衡(HCHE)用于自适应对比度增强。 HCHE可以基于有关图像直方图的两个不同信息自动生成混合累积直方图(HCH)。 HCHE可以改善对热物体而不是背景的增强效果。实验结果得到了解决,并证明了所提出的方法是可行的,可以用作提高IR静脉图案图像质量的有效和自适应过程。

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