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Authentication of Smartphone Users Based on Activity Recognition and Mobile Sensing

机译:基于活动识别和移动感知的智能手机用户身份认证

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摘要

Smartphones are context-aware devices that provide a compelling platform for ubiquitous computing and assist users in accomplishing many of their routine tasks anytime and anywhere, such as sending and receiving emails. The nature of tasks conducted with these devices has evolved with the exponential increase in the sensing and computing capabilities of a smartphone. Due to the ease of use and convenience, many users tend to store their private data, such as personal identifiers and bank account details, on their smartphone. However, this sensitive data can be vulnerable if the device gets stolen or lost. A traditional approach for protecting this type of data on mobile devices is to authenticate users with mechanisms such as PINs, passwords, and fingerprint recognition. However, these techniques are vulnerable to user compliance and a plethora of attacks, such as smudge attacks. The work in this paper addresses these challenges by proposing a novel authentication framework, which is based on recognizing the behavioral traits of smartphone users using the embedded sensors of smartphone, such as Accelerometer, Gyroscope and Magnetometer. The proposed framework also provides a platform for carrying out multi-class smart user authentication, which provides different levels of access to a wide range of smartphone users. This work has been validated with a series of experiments, which demonstrate the effectiveness of the proposed framework.
机译:智能手机是情境感知设备,可为无处不在的计算提供引人注目的平台,并帮助用户随时随地完成许多例行任务,例如发送和接收电子邮件。随着智能手机的感测和计算功能呈指数级增长,使用这些设备执行的任务的性质已经发生了演变。由于易于使用和方便,许多用户倾向于将其私人数据(例如个人标识符和银行帐户详细信息)存储在其智能手机上。但是,如果设备被盗或丢失,此敏感数据可能很容易受到攻击。保护移动设备上此类数据的传统方法是使用PIN,密码和指纹识别等机制对用户进行身份验证。但是,这些技术容易受到用户合规性和大量攻击(例如污迹攻击)的攻击。本文的工作通过提出一种新颖的身份验证框架来解决这些挑战,该框架基于使用智能手机的嵌入式传感器(如加速度计,陀螺仪和磁力计)识别智能手机用户的行为特征。所提出的框架还提供了用于执行多类智能用户身份验证的平台,该平台为广泛的智能手机用户提供了不同级别的访问权限。这项工作已通过一系列实验得到验证,这些实验证明了所提出框架的有效性。

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