VibWrite:通过物理振动在无处不在的表面上实现手指输入认证

Jian Liu, Chen Wang, Yingying Chen, Nitesh Saxena
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引用次数: 82

摘要

这项工作的目标是利用低成本的物理振动,通过手指输入在无处不在的表面上实现用户身份验证。我们建议VibWrite将手指输入认证扩展到触摸屏以外的任何实体表面,用于智能访问系统(例如,访问公寓,车辆或智能电器)。它集成了密码、行为和生理特征以及表面依赖性,提供了一种低成本、有形和增强的安全解决方案。VibWrite建立在触摸传感技术的基础上,振动信号可以在各种材料的表面上运行。它与传统的基于密码的方法(仅验证密码本身而不验证合法用户)和基于行为生物识别技术的解决方案(通常涉及特定或昂贵的硬件(例如触摸屏或指纹读取器))有很大不同,这些解决方案会引起隐私问题并遭受污迹攻击。VibWrite基于新的算法来区分细粒度的手指输入,并通过在频域提取独特的特征来捕获行为和生理特征,如接触面积,触摸力等,支持三个独立的密码秘密,包括PIN号码,锁模式和简单的手势。VibWrite是使用一对低成本的振动电机和接收器实现的,可以很容易地连接到任何表面(例如,门板,桌子或电器)。我们的大量实验表明,VibWrite可以以高精度(例如,在两次试验中超过95%),低假阳性率(例如,小于3%)验证用户,并且对各种类型的攻击具有鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VibWrite: Towards Finger-input Authentication on Ubiquitous Surfaces via Physical Vibration
The goal of this work is to enable user authentication via finger inputs on ubiquitous surfaces leveraging low-cost physical vibration. We propose VibWrite that extends finger-input authentication beyond touch screens to any solid surface for smart access systems (e.g., access to apartments, vehicles or smart appliances). It integrates passcode, behavioral and physiological characteristics, and surface dependency together to provide a low-cost, tangible and enhanced security solution. VibWrite builds upon a touch sensing technique with vibration signals that can operate on surfaces constructed from a broad range of materials. It is significantly different from traditional password-based approaches, which only authenticate the password itself rather than the legitimate user, and the behavioral biometrics-based solutions, which usually involve specific or expensive hardware (e.g., touch screen or fingerprint reader), incurring privacy concerns and suffering from smudge attacks. VibWrite is based on new algorithms to discriminate fine-grained finger inputs and supports three independent passcode secrets including PIN number, lock pattern, and simple gestures by extracting unique features in the frequency domain to capture both behavioral and physiological characteristics such as contacting area, touching force, and etc. VibWrite is implemented using a single pair of low-cost vibration motor and receiver that can be easily attached to any surface (e.g., a door panel, a desk or an appliance). Our extensive experiments demonstrate that VibWrite can authenticate users with high accuracy (e.g., over 95% within two trials), low false positive rate (e.g., less 3%) and is robust to various types of attacks.
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