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Improving the Security of Mobile Devices Through Multi-Dimensional and Analog Authentication

机译:通过多维和模拟身份验证提高移动设备的安全性

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摘要

Mobile devices are ubiquitous in today's society, and the usage of these devices for secure tasks like corporate email, banking, and stock trading grows by the day. The first, and often only, defense against attackers who get physical access to the device is the lock screen: the authentication task required to gain access to the device. To date mobile devices have languished under insecure authentication scheme offerings like PINs, Pattern Unlock, and biometrics-- or slow offerings like alphanumeric passwords. This work addresses the design and creation of five proof-of-concept authentication schemes that seek to increase the security of mobile authentication without compromising memorability or usability. These proof-of-concept schemes demonstrate the concept of Multi-Dimensional Authentication, a method of using data from unrelated dimensions of information, and the concept of Analog Authentication, a method utilizing continuous rather than discrete information. Security analysis will show that these schemes can be designed to exceed the security strength of alphanumeric passwords, resist shoulder-surfing in all but the worst-case scenarios, and offer significantly fewer hotspots than existing approaches. Usability analysis, including data collected from user studies in each of the five schemes, will show promising results for entry times, in some cases on-par with existing PIN or Pattern Unlock approaches, and comparable qualitative ratings with existing approaches. Memorability results will demonstrate that the psychological advantages utilized by these schemes can lead to real-world improvements in recall, in some instances leading to near-perfect recall after two weeks, significantly exceeding the recall rates of similarly secure alphanumeric passwords.
机译:移动设备在当今社会无处不在,并且这些设备用于安全任务(例如公司电子邮件,银行业务和股票交易)的使用日益增长。锁定屏幕:针对物理访问设备的攻击者的第一个(通常也是唯一的)防御是锁定屏幕:获取设备访问权所需的身份验证任务。迄今为止,移动设备在不安全的身份验证方案(例如PIN,模式解锁和生物识别技术)或慢速服务(例如字母数字密码)下陷入困境。这项工作解决了五个概念验证认证方案的设计和创建,这些方案旨在提高移动认证的安全性而又不损害记忆性或可用性。这些概念验证方案演示了多维身份验证的概念(一种使用来自无关维度的信息的数据的方法)和模拟身份验证的概念(一种使用连续而非离散信息的方法)的概念。安全分析将显示,可以设计这些方案以超过字母数字密码的安全强度,在除最坏情况之外的所有情况下都可以阻止肩上冲浪,并且与现有方法相比,提供的热点明显更少。可用性分析(包括从五个方案中的每个用户研究中收集的数据)将显示出令人鼓舞的输入时间结果,在某些情况下,该结果与现有PIN或Pattern Unlock方法相当,并且定性评级与现有方法相当。记忆性结果将表明,这些方案所利用的心理优势可以导致真实世界的召回率提高,在某些情况下,两周后召回率将接近完美,大大超过了类似安全的字母数字密码的召回率。

著录项

  • 作者

    Gurary, Jonathan.;

  • 作者单位

    Cleveland State University.;

  • 授予单位 Cleveland State University.;
  • 学科 Computer science.;Computer engineering.
  • 学位 D.Engr.
  • 年度 2018
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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