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OCT en phase pour la reconnaissance biométrique par empreintes digitales et sa sécurisation

机译:OCT阶段性用于指纹生物特征识别及其安全性

摘要

In an increasingly open world, the flows of people are brought to explode in the coming years. Facilitating, streamlining, and managing these flows, by maintaining strict security constraints, therefore represent a key element for the global socio-economic dynamism. This flows management is mainly based on knowledge and verification of person identity. For its practicality and a priori secured, biometrics, in particular fingerprints biometrics, has become an effective and unavoidable solution.Nevertheless, it still suffers from two severe limitations. The first one concerns the poor performances obtained with damaged fingers. This damage can be involuntary (e.g. manual workers) or volunteers, for purposes of anonymity. The second limitation consists in the vulnerability of the commonly used sensors. In particular, they are vulnerable to copies of stolen fingerprints, made by malicious persons for identity theft purpose. We believe that these limitations are due to the small amount of information brought by the usual biometric sensors. It often consists in a single print of the finger surface. However, the biological complexity of human tissue provides rich information, unique to each person, and very difficult to reproduce. We therefore proposed an imaging approach based on Optical Coherence Tomography (OCT), a 3D contactless optical sensor, to finely measure this information. The main idea of the thesis is therefore to explore novel ways to exploit this information in order to make biometrics more robust and truly secured. In particular, we have proposed and evaluated different fingerprint imaging methods, based on the phase of the OCT signal
机译:在一个日益开放的世界中,未来几年人潮将激增。因此,通过维持严格的安全约束来促进,精简和管理这些流,是全球社会经济活力的关键要素。该流程管理主要基于知识和人员身份验证。由于其实用性和先验的安全性,生物识别技术(尤其是指纹生物识别技术)已成为一种有效且不可避免的解决方案,尽管如此,它仍然受到两个严重限制。第一个问题涉及手指受损导致的不良表现。出于匿名目的,这种损害可以是非自愿的(例如体力劳动者)或自愿者。第二个限制在于常用传感器的脆弱性。特别是,它们很容易受到恶意软件出于身份盗用目的而盗窃的指纹的复制。我们认为,这些限制是由于通常的生物识别传感器带来的信息量很少。它通常包括手指表面的单个印记。然而,人体组织的生物复杂性提供了丰富的信息,这对每个人来说都是唯一的,并且很难复制。因此,我们提出了一种基于光学相干断层扫描(OCT)(一种3D非接触式光学传感器)的成像方法,以精确地测量此信息。因此,本文的主要思想是探索利用这种信息的新颖方法,以使生物识别技术更加健壮和真正安全。特别是,我们根据OCT信号的相位提出并评估了不同的指纹成像方法

著录项

  • 作者

    Lamare François;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 fr
  • 中图分类

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