Forgery-Resistant Touch-based Authentication on Mobile Devices

N. Gong, Mathias Payer, R. Moazzezi, Mario Frank
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引用次数: 31

Abstract

Mobile devices store a diverse set of private user data and have gradually become a hub to control users' other personal Internet-of-Things devices. Access control on mobile devices is therefore highly important. The widely accepted solution is to protect access by asking for a password. However, password authentication is tedious, e.g., a user needs to input a password every time she wants to use the device. Moreover, existing biometrics such as face, fingerprint, and touch behaviors are vulnerable to forgery attacks. We propose a new touch-based biometric authentication system that is passive and secure against forgery attacks. In our touch-based authentication, a user's touch behaviors are a function of some random "secret". The user can subconsciously know the secret while touching the device's screen. However, an attacker cannot know the secret at the time of attack, which makes it challenging to perform forgery attacks even if the attacker has already obtained the user's touch behaviors. We evaluate our touch-based authentication system by collecting data from 25 subjects. Results are promising: the random secrets do not influence user experience and, for targeted forgery attacks, our system achieves 0.18 smaller Equal Error Rates (EERs) than previous touch-based authentication.
移动设备的防伪造触摸认证
移动设备存储了各种各样的用户私人数据,并逐渐成为控制用户其他个人物联网设备的枢纽。因此,移动设备上的访问控制非常重要。广泛接受的解决方案是通过要求输入密码来保护访问。然而,密码认证是繁琐的,例如,用户每次想要使用设备时都需要输入密码。此外,现有的生物特征,如面部、指纹和触摸行为,很容易受到伪造攻击。我们提出了一种新的基于触摸的生物识别认证系统,该系统具有被动和安全的抗伪造攻击能力。在我们的基于触摸的认证中,用户的触摸行为是一些随机“秘密”的函数。用户可以在触摸设备屏幕时下意识地知道这个秘密。然而,攻击者在攻击时无法知道其中的秘密,这使得即使攻击者已经获得了用户的触摸行为,也很难进行伪造攻击。我们通过收集25名受试者的数据来评估基于触摸的认证系统。结果是有希望的:随机秘密不会影响用户体验,对于有针对性的伪造攻击,我们的系统比以前的基于触摸的身份验证实现0.18小的等错误率(EERs)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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