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Identity Authentication and Near Field Device Authentication for Smart Devices.

机译:智能设备的身份验证和近场设备验证。

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摘要

The widespread adoption of mobile devices gives rise to new opportunities and challenges for authentication mechanisms. Many traditional authentication mechanisms become unsuitable for smart devices. For example, while password is widely used on computers as user identity authentication, inputting password on small smartphone screen is error-prone and not convenient. In the meantime, there are emerging demands for new types of authentication. Proximity authentication is an example, which is not needed for computers but quite necessary for smart devices. These challenges motivate me to study and develop novel authentication mechanisms specific for smart devices.;In this dissertation, I am interested in the special authentication demands of smart devices and about to satisfy the demands. First, I study how the features of smart devices affect user identity authentications. For identity authentication domain, I aim to design a continuous, forge-resistant authentication mechanism that does not interrupt user-device interactions. I propose a mechanism that authenticates user identity based on the user's finger movement patterns. Next, I study a smart-device-specific authentication, proximity authentication, which authenticates whether two devices are in close proximity. For proximity authentication domain, I aim to design a user-friendly authentication mechanism that can defend against relay attacks. In addition, I restrict the authenticated distance to the scale of near field, i.e., a few centimeters. My first design utilizes a user's coherent two-finger movement on smart device screen to restrict the distance. To achieve a fully-automated system, I explore acoustic communications and propose a novel near field authentication system.
机译:移动设备的广泛采用为身份验证机制带来了新的机遇和挑战。许多传统的身份验证机制变得不适用于智能设备。例如,虽然密码在计算机上广泛用作用户身份认证,但在智能手机的小屏幕上输入密码容易出错并且不方便。同时,对新型身份验证的需求不断增长。邻近身份验证是一个示例,计算机不需要,但智能设备则非常需要。这些挑战促使我研究和开发针对智能设备的新型身份验证机制。;本文对智能设备的特殊身份验证需求感兴趣,并将满足这些需求。首先,我研究智能设备的功能如何影响用户身份认证。对于身份验证域,我旨在设计一种不中断用户设备交互的连续,防伪验证机制。我提出了一种基于用户的手指运动模式来验证用户身份的机制。接下来,我研究特定于智能设备的身份验证,即接近身份验证,该身份验证用于验证两个设备是否紧密接近。对于邻近身份验证域,我旨在设计一种用户友好的身份验证机制,以防御中继攻击。另外,我将认证距离限制在近场的范围内,即几厘米。我的第一个设计利用了智能设备屏幕上用户连贯的两指移动来限制距离。为了实现全自动系统,我探索了声学通信并提出了一种新颖的近场认证系统。

著录项

  • 作者

    Li, Lingjun.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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