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Defending Touch-based Continuous Authentication Systems from Active Adversaries Using Generative Adversarial Networks

机译:使用生成对策网络防御基于接触的连续身份验证系统

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Previous studies have demonstrated that commonly studied (vanilla) touch-based continuous authentication systems (V-TCAS) are susceptible to population attack. This paper proposes a novel Generative Adversarial Network assisted TCAS (G-TCAS) framework, which showed more resilience to the population attack. G-TCAS framework was tested on a dataset of 117 users who interacted with a smartphone and tablet pair. On average, the increase in the false accept rates (FARs) for V-TCAS was much higher (22%) than G-TCAS (13%) for the smartphone. Likewise, the increase in the FARs for V-TCAS was 25% compared to G-TCAS (6%) for the tablet.
机译:以前的研究表明,常用的(香草)基于触控的连续认证系统(V-TCAS)易于群体攻击。 本文提出了一种新型生成的对抗网络辅助TCAS(G-TCAS)框架,这表明对人口袭击进行了更多的弹性。 在与智能手机和平板电脑对互动的117名用户的数据集上测试了G-TCAS框架。 平均而言,V-TCAS的假接受率(FARS)的增加高于智能手机的G-TCAS(13%)高得多(22%)。 同样,与片剂的G-TCAS(6%)相比,V-TCAS的FARS的增加25%。

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