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A compact finger-vein identification system based on infrared imaging

机译:基于红外成像的紧凑型手指静脉识别系统

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Finger-vein identification has become the most popular biometric identify methods. The investigation on the identification algorithms always is the key point in this field. So far, there are many applicable algorithms have been developed. However, there are still some problems in practice, such as the variance of the finger position which may lead to the image distortion and shifting; during the identification process, some matching parameters determined according to experience may also reduce the adaptability of algorithm. Focus on above mentioned problems, this paper proposes an improved finger-vein identification algorithm based on template matching. In order to enhance the robustness of the algorithm for the image distortion, the least squares error method is adopted to correct the oblique finger. During the feature extraction, local adaptive threshold method is adopted. As regard as the matching scores, we optimized the translation preferences as well as matching distance between the input images and register images on the basis of Naoto Miura algorithm. Experimental results indicate that the proposed method can improve the robustness effectively under the finger shifting and rotation conditions.
机译:手指静脉识别已成为最受欢迎的生物识别方法。对识别算法的调查始终是该字段中的关键点。到目前为止,已经开发了许多适用的算法。然而,实践中仍存在一些问题,例如手指位置的方差,这可能导致图像失真和移位;在识别过程中,根据经验确定的一些匹配参数也可以降低算法的适应性。专注于上述问题,本文提出了一种基于模板匹配的引导静脉识别算法。为了提高算法的稳健性,用于图像失真,采用最小二乘误差方法来校正倾斜手指。在特征提取过程中,采用局部自适应阈值方法。关于匹配分数,我们优化了在Naoto Miura算法的输入图像和寄存器图像之间的匹配距离以及匹配距离。实验结果表明,该方法可以在手指移位和旋转条件下有效地改善鲁棒性。

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