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Anonymous biometrics-based authentication scheme with key distribution for mobile multi-server environment

机译:移动多服务器环境中基于密钥分配的基于匿名生物识别的身份验证方案

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摘要

Significant advances in wireless communication technologies have led to the emergence and proliferation of a wide range of mobile devices and mobile services. However, the use of various cloud servers has made the traditional single-server architecture, where we have one server and many users, inefficient in terms of its performance. To address this drawback, multi-server architectures have been proposed. Password or smart card-based authentication schemes suffer from poor security in the multi-server environment and as a result biometrics have become a preferred choice for secure and robust authentication because of its close link with the physical characteristics of an individual. Recently Kumari and Li et al. proposed a biometrics-based authentication scheme for multi-server environment. However, we found that their scheme fails to meet user anonymity requirement and is vulnerable to several attacks. Therefore, first of our work, we describe the various possible attacks on the previous scheme. Then, to enhance user anonymity, we propose a new biometrics-based authentication scheme with key distribution for the mobile multi-server environment. Our proposed scheme is based on smart card and elliptic curve cryptosystem. Informal and formal security analyses demonstrate that our scheme can satisfy the security and functional requirements in the mobile multi-server environment. Moreover, performance results (such as computation and communication cost) obtained with our proposed scheme demonstrate significant improvements in the level of security.
机译:无线通信技术的重大进步已导致各种移动设备和移动服务的出现和扩散。但是,对各种云服务器的使用使传统的单服务器体系结构(其中我们有一台服务器和许多用户)的性能低下。为了解决这个缺点,已经提出了多服务器架构。基于密码或基于智能卡的身份验证方案在多服务器环境中的安全性较差,因此,由于生物识别技术与个人的身体特征密切相关,因此生物特征识别已成为安全可靠的身份验证的首选。最近Kumari和Li等人。提出了一种用于多服务器环境的基于生物特征的认证方案。但是,我们发现他们的方案无法满足用户匿名性要求,并且容易受到多种攻击。因此,我们的工作首先,描述了对先前方案的各种可能的攻击。然后,为了增强用户的匿名性,我们针对移动多服务器环境提出了一种新的基于生物统计的身份验证方案,该方案具有密钥分发功能。我们提出的方案基于智能卡和椭圆曲线密码系统。非正式和正式的安全性分析表明,我们的方案可以满足移动多服务器环境中的安全性和功能要求。而且,通过我们提出的方案获得的性能结果(例如计算和通信成本)证明了安全级别的显着提高。

著录项

  • 来源
    《Future generation computer systems》 |2018年第7期|239-251|共13页
  • 作者单位

    State Key Lab of Software Engineering, Computer School, Wuhan University;

    State Key Lab of Software Engineering, Computer School, Wuhan University;

    College of Communication and Information, University of Kentucky;

    Jiangsu Key Laboratory of Big Data Security and Intelligent Processing, School of Computer School, Nanjing University of Posts and Telecommunications;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Authentication; Biometrics; Cryptography; User anonymity; Smart card; ECC;

    机译:身份验证;生物识别;密码学;用户匿名;智能卡;ECC;

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