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A SCHEME FOR TEMPLATE SECURITY AT FEATURE FUSION LEVEL IN MULTIMODAL BIOMETRIC SYSTEM

机译:多模式生物识别系统特征融合级别的模板安全方案

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摘要

Biometric is the science of human recognition based upon using their biological, chemical or behavioural traits. These systems are used in many real life applications simply from biometric based attendance system to providing security at very sophisticated level. A biometric system deals with raw data captured using a sensor and feature template extracted from raw image. One of the challenges being faced by designers of these systems is to secure template data extracted from the biometric modalities of the user and protect the raw images. To minimize spoof attacks on biometric systems by unauthorised users one of the solutions is to use multi-biometric systems. Multi-modal biometric system works by using fusion technique to merge feature templates generated from different modalities of the human. In this work a new scheme is proposed to secure template during feature fusion level. Scheme is based on union operation of fuzzy relations of templates of modalities during fusion process of multimodal biometric systems. This approach serves dual purpose of feature fusion as well as transformation of templates into a single secured non invertible template. The proposed technique is cancelable and experimentally tested on a bimodal biometric system comprising of fingerprint and hand geometry. Developed scheme removes the problem of an attacker learning the original minutia position in fingerprint and various measurements of hand geometry. Given scheme provides improved performance of the system with reduction in false accept rate and improvement in genuine accept rate.
机译:生物识别是基于使用其生物学,化学或行为性状的人类识别的科学。这些系统仅在许多现实生活中使用,简单地从基于生物识别的考勤系统来提供安全性在非常复杂的水平。生物识别系统处理使用从RAW图像中提取的传感器和功能模板捕获的原始数据。这些系统的设计人员面临的挑战之一是确保从用户的生物识别方式提取的模板数据并保护原始图像。为了通过未经授权的用户最大限度地减少生物识别系统的欺骗攻击,其中一个解决方案是使用多生物识别系统。多模态生物识别系统通过使用融合技术来合并从人类不同模式产生的功能模板。在这项工作中,提出了一种新的方案来保护功能融合级别的模板。方案是基于多式化生物识别系统融合过程中数码模板模糊关系的联盟运行。该方法为特征融合的双重目的提供了一种功能融合以及模板将模板的转换为单个安全的非可逆模板。所提出的技术可在双峰生物识别系统上进行取消,并经过实验测试,包括指纹和手几何形状。开发方案消除了攻击者在指纹中学习原始细节位置的问题和各种手几何测量。鉴于方案提供了系统的改进性能,减少了虚假接受率和正品接受率的改善。

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