生物识别触摸传感:通过连续认证无缝地增强每次触摸

Christian Holz, Marius Knaust
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引用次数: 69

摘要

当前的触控设备将用户认证与常规交互分离开来,例如在设备使用前显示模式登录屏幕或提示输入应用内密码,这会中断交互流程。我们提出了生物识别触摸传感,这是一种表示触摸事件的新方法,使商品设备能够无缝地将身份验证集成到交互中:从每次触摸中,触摸屏感知2D输入坐标,同时获得识别用户的生物特征。我们的方法使交互过程中的身份验证对用户透明,但始终确保安全交互。为了在今天的设备上实现这一点,我们的手表原型Bioamp感知用户手腕的阻抗曲线,并使用周期性电信号通过皮肤将信号调制到用户的身体上。该信号影响触摸屏在触摸时测量的电容值,允许设备在每次触摸时识别用户。我们将我们的方法整合到Windows 8中,并在各种用例的背景下进行讨论和演示,包括访问权限和保护个人和共享设备上的私人屏幕内容。
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Biometric Touch Sensing: Seamlessly Augmenting Each Touch with Continuous Authentication
Current touch devices separate user authentication from regular interaction, for example by displaying modal login screens before device usage or prompting for in-app passwords, which interrupts the interaction flow. We propose biometric touch sensing, a new approach to representing touch events that enables commodity devices to seamlessly integrate authentication into interaction: From each touch, the touchscreen senses the 2D input coordinates and at the same time obtains biometric features that identify the user. Our approach makes authentication during interaction transparent to the user, yet ensures secure interaction at all times. To implement this on today's devices, our watch prototype Bioamp senses the impedance profile of the user's wrist and modulates a signal onto the user's body through skin using a periodic electric signal. This signal affects the capacitive values touchscreens measure upon touch, allowing devices to identify users on each touch. We integrate our approach into Windows 8 and discuss and demonstrate it in the context of various use cases, including access permissions and protecting private screen contents on personal and shared devices.
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