Implicit Smartphone User Authentication with Sensors and Contextual Machine Learning

August 30, 2017 Β· Declared Dead Β· πŸ› Dependable Systems and Networks

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Authors Wei-Han Lee, Ruby B. Lee arXiv ID 1708.09754 Category cs.CR: Cryptography & Security Citations 76 Venue Dependable Systems and Networks Last Checked 5 months ago
Abstract
Authentication of smartphone users is important because a lot of sensitive data is stored in the smartphone and the smartphone is also used to access various cloud data and services. However, smartphones are easily stolen or co-opted by an attacker. Beyond the initial login, it is highly desirable to re-authenticate end-users who are continuing to access security-critical services and data. Hence, this paper proposes a novel authentication system for implicit, continuous authentication of the smartphone user based on behavioral characteristics, by leveraging the sensors already ubiquitously built into smartphones. We propose novel context-based authentication models to differentiate the legitimate smartphone owner versus other users. We systematically show how to achieve high authentication accuracy with different design alternatives in sensor and feature selection, machine learning techniques, context detection and multiple devices. Our system can achieve excellent authentication performance with 98.1% accuracy with negligible system overhead and less than 2.4% battery consumption.
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