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Counting clicks and beeps: Exploring numerosity based haptic and audio PIN entry

机译:计算点击和蜂鸣声:探索基于数字的触觉和音频PIN输入

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摘要

Haptic and audio cues now appear commonly in computer interfaces, partially due to inherent advanta ges such as their support for eyes-free interaction. Their invisible, unobservable nature also makes them ideal candidates for security interfaces in which users have to enter secret information such as pass words. In particular, researchers have explored this idea through the design of PIN entry authentication systems based on multi-modal combinations of visual and non-visual content or on the recognition of small sets of unimodal haptic or audio stimuli. This paper highlights the benefits and performance lim itations of these approaches and introduces an alternative based on unimodal audio or haptic temporal numerosity - the ability to accurately and rapidly determine the number of cues presented in rapid tem poral succession. In essence, in a numerosity interface, rather than recognizing distinct cues, users must count the number of times that a single cue occurs. In an iterative process of design and evaluation, three prototypes implementing this concept are presented and studies of their use reported. The results show the fastest PIN entry times and lowest error rates to be 8 s and 2%, figures that improve substantially on previous research. These results are attained while maintaining low levels of workload and substantial resistance to observation attack (as determined via camera attack security studies). In sum, this paper argues that unimodal audio and haptic numerosity is a valuable and relatively unexplored metaphor for non-visual input and demonstrates the validity of this claim in the demanding task of unobservable authentication systems.
机译:触觉和音频提示现在普遍出现在计算机界面中,部分是由于其固有的优势,例如它们支持无眼交互。它们的隐形,不可观察的特性也使其成为安全接口的理想选择,在安全接口中,用户必须输入密码等秘密信息。尤其是,研究人员通过设计基于视觉和非视觉内容的多模式组合或识别少量单模态触觉或音频刺激的PIN输入身份验证系统,探索了这一想法。本文重点介绍了这些方法的优点和性能局限性,并介绍了一种基于单峰音频或触觉时间数字的替代方法-准确快速地确定快速临时序列中提示的数量的能力。本质上,在数字界面中,用户必须识别单个提示出现的次数,而不是识别不同的提示。在设计和评估的迭代过程中,提出了实现此概念的三个原型,并报告了其使用研究。结果表明,最快的PIN输入时间和最低的错误率分别为8 s和2%,这一数字与以前的研究相比有很大的提高。这些结果是在保持较低的工作量和对观察攻击的抵抗力(通过摄像机攻击安全性研究确定)的同时获得的。总而言之,本文认为单模态音频和触觉数字是非视觉输入的有价值且相对未开发的隐喻,并证明了这种主张在不可观察的认证系统的苛刻任务中的有效性。

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