使用机载环境光传感器的智能设备的光学无线认证

K. Dhondge, Baek-Young Choi, Sejun Song, Hyungbae Park
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引用次数: 8

摘要

随着最近智能手机软件和硬件技术的不断改进,许多智能手机用户设想在他们的智能手机上执行各种关键任务应用程序,这些应用程序以前是通过pc完成的。因此,智能手机身份验证已成为最关键的安全问题之一。由于智能手机的外形相对较小,传统的用户id和密码类型身份验证被认为是一种不方便且耗时的方法。利用智能手机的各种传感器技术,正在积极研究模式、手势、指纹、人脸识别等替代认证方法。但是,这些身份验证方法仍然存在速度、可靠性和可用性问题。它们特别不适合在恶劣条件下和有身体挑战的用户。在本文中,我们评估了各种使用场景下现有的替代智能手机认证方法,以提出基于环境光传感器的智能手机认证。我们设计并原型化了一个基于挑战的可编程、快速、廉价、可靠和易于使用(FIRE)的硬件身份验证令牌。FIRE令牌使用板载LED通过光学无线信号(OWS)将密码传输到智能手机,智能手机通过其环境光传感器捕获并解释密码。FIRE令牌是逆双签名(IDS)中挑战响应技术的一部分,我们设计该技术是为了促进关键任务智能手机应用程序的多因素身份验证。我们的实验证明,FIRE可以在不影响安全质量和用户体验的情况下,以简单、快速、可靠的方式在智能手机上对用户进行身份验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical Wireless authentication for smart devices using an onboard ambient light sensor
As recent smartphone technologies in software and hardware keep on improving, many smartphone users envision to perform various mission critical applications on their smart-phones that were previously accomplished by using PCs. Hence, smartphone authentication has become one of the most critical security issues. Due to the relatively small smartphone form factor, the traditional user id and password typed authentication is considered as an inconvenient and time-taking approach. Taking advantage of various sensor technologies of smartphones, alternative authentication methods such as pattern, gesture, finger print, and face recognition have been actively researched. However, those authentication methods still pose one of speed, reliability, and usability issues. They are especially not suitable for the users in rugged conditions and with physical challenges. In this paper, we evaluate existing alternative smartphone authentication approaches in various usage scenarios to propose ambient light sensor based authentication for smartphones. We have designed and prototyped a challenge-based programmable Fast, Inexpensive, Reliable, and Easy-to-use (FIRE) hardware authentication token. FIRE token uses an onboard LED to transmit passwords via an Optical Wireless Signal (OWS) to the smartphone that captures, and interprets it via its ambient light sensor. FIRE token is a part of the challenge-response technique in the Inverse Dual Signature (IDS) that we designed to facilitate a multi-factor authentication for the mission critical smartphone applications. Our experiments validate that FIRE can authenticate a user on a smartphone in a simple, fast, and reliable way without compromising the security quality and user experience.
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