Multimodal Image Fusion in Biometric Authentication

Uma Maheshwari, Kalpana Kalpana
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Abstract

During this study, a unique multimodal biometric system was constructed. This system incorporated a variety of unimodal biometric inputs, including fingerprints, palmprints, knuckle prints, and retina images. The multimodal system generated the fused template via feature-level fusion, which combined several different biometric characteristics. The Gabor filter extracted the features from the various biometric aspects. The fusion of the extracted information from the fingerprint, knuckle print, palmprint, and retina into a single template, which was then saved in the database for authentication, resulted in a reduction in both the spatial and temporal complexity of the process. A novel technique for safeguarding fingerprint privacy has been developed to contribute to the study. This system integrates the unique fingerprints of the thumb, index finger, and middle finger into a single new template. It was suggested that the Fixed-Size Template (FEFST) technique may be used might develop a novel strategy for the extraction of fingerprint features. From each of the fingerprints, the minute locations of the ridge end and ridge bifurcations as well as their orientations relative to the reference points were retrieved. The primary template was derived from the fingerprint that included the greatest number of ridge ends. For the purpose of generating the combined minutiae template, the templates of the other two fingerprints were incorporated into this template. The merged minutiae template that was developed was then saved in a database so that registration could take place. During the authentication process, the system received the three query fingerprints, and those fingerprints were compared to the previously saved template.
生物特征认证中的多模态图像融合
在本研究中,构建了一个独特的多模态生物识别系统。该系统整合了多种单峰生物识别输入,包括指纹、掌纹、指关节指纹和视网膜图像。多模态系统通过特征级融合生成融合模板,融合模板结合了几种不同的生物特征。Gabor滤波器从生物特征的各个方面提取特征。将提取的指纹、指关节印、掌纹和视网膜信息融合到一个模板中,然后保存在数据库中进行身份验证,从而降低了该过程的空间和时间复杂性。一种新的指纹隐私保护技术的开发有助于研究。该系统将拇指、食指和中指的独特指纹整合到一个新的模板中。结果表明,固定尺寸模板(FEFST)技术可以为指纹特征提取提供一种新的方法。从每个指纹中,检索到脊端和脊分叉的微小位置及其相对于参考点的方向。主要模板来源于脊端数量最多的指纹。将另外两个指纹的模板合并到该模板中,生成复合细节模板。然后将开发的合并的细节模板保存在数据库中,以便进行注册。在认证过程中,系统接收到三个查询指纹,将这些指纹与之前保存的模板进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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