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Authenticating Phone Users Using a Gait-Based Histogram Approach on Mobile App Sessions

机译:在移动应用会话上使用基于步态的直方图方法对电话用户进行身份验证

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Collectively, user-friendly interfaces, small but impactful sensing technologies, intuitive device designs, and the variety of mobile applications (or apps) have transformed the expectations for cellular phones. Apps are a primary factor in device functionality; they allow users to quickly carry out tasks directly on their device. This paper leverages mobile apps for continuous authentication of mobile device users. We borrow from a gait-based approach by continuously extracting n-bin histograms from numerically encoded app data. Since more active subjects will generate more data, it would be trivial to distinguish between these subjects and others which are not as active. Thus, we divided a dataset of 19 months of app data from 181 subjects into three datasets to determine if minimally active, moderately active, or very active subjects were more challenging to authenticate. Using the absolute distance between two histograms, our approach yielded a worst-case EER of 0.188 and a best-case EER of 0.036 with a worst-case initial training period of 1.06 hours. We also show a positive correlation between user activity level and performance, and template size and performance. Our method is characterized by minimal training samples and a context-independent evaluation, addressing important factors which are known to affect the practicality of continuous authentication systems.
机译:总体而言,用户友好的界面,小型但有影响力的传感技术,直观的设备设计以及各种移动应用程序(或应用程序)已经改变了对蜂窝电话的期望。应用是设备功能的主要因素;它们使用户可以直接在其设备上快速执行任务。本文利用移动应用程序对移动设备用户进行连续身份验证。我们通过从数字编码的应用程序数据中连续提取n-bin直方图,借鉴了基于步态的方法。由于更多活跃的主体会生成更多数据,因此区分这些主体和其他不活跃的主体将是微不足道的。因此,我们将来自181个受试者的19个月应用程序数据的数据集分为三个数据集,以确定最低活跃度,中度活跃度或非常活跃度的主体是否更难以进行身份​​验证。使用两个直方图之间的绝对距离,我们的方法得出最坏情况的EER为0.188,最坏情况的EER为0.036,最坏情况的初始训练时间为1.06小时。我们还显示了用户活动级别和性能以及模板大小和性能之间的正相关。我们的方法的特点是最少的训练样本和上下文无关的评估,解决了已知会影响连续身份验证系统实用性的重要因素。

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