一个灵活的、保护隐私的身份验证框架,适用于无处不在的计算环境

He Zheng, Jin Kwak, Kyungho Son, Wansuk Lee, Seungjoo Kim, Dongho Won
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引用次数: 74

摘要

智能小工具、家电、移动设备、pda和传感器的激增,使普适计算环境的构建成为可能,将常规的物理空间转变为智能增强和服务增强的“主动信息空间”。这种令人兴奋的新计算范式有望彻底改变我们与计算机、服务和周围物理空间交互的方式,从而在用户和计算服务之间产生更高的生产力和更无缝的交互。然而,这种计算范式在现实生活中的部署受到安全性差的阻碍,特别是缺乏适当的身份验证和访问控制技术以及隐私保护协议。我们提出了一个身份验证框架,通过使用不同的可穿戴和嵌入式设备来解决这个问题。这些设备以透明、方便和私有的方式对具有不同信任级别的实体进行身份验证,从而使框架能够很好地融入无处不在的计算环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A flexible, privacy-preserving authentication framework for ubiquitous computing environments
The proliferation of smart gadgets, appliances, mobile devices, PDAs and sensors has enabled the construction of ubiquitous computing environments, transforming regular physical spaces into "Active Information Spaces" augmented with intelligence and enhanced with services. This new exciting computing paradigm promises to revolutionize the way we interact with computers, services, and the surrounding physical spaces, yielding higher productivity and more seamless interaction between users and computing services. However, the deployment of this computing paradigm in real-life is hindered by poor security, particularly, the lack of proper authentication and access control techniques and privacy preserving protocols. We propose an authentication framework that addresses this problem through the use of different wearable and embedded devices. These devices authenticate entities with varied levels of confidence, in a transparent, convenient, and private manner, allowing the framework to blend nicely into ubiquitous computing environments.
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