A Context-Risk-Aware Access Control model for Ubiquitous environments

A. Ahmed, Ning Zhang
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引用次数: 10

Abstract

This paper reports our ongoing work to design a context-risk-aware access control (CRAAC) model for ubiquitous computing (UbiComp) environments. CRAAC is designed to augment flexibility and generality over the current solutions. Risk assessment and authorization level of assurance play a key role in CRAAC. Through risk assessment, resources are classified into groups according to their sensitivity levels and potential impacts should any unauthorized access occurs. The identified risks are mapped onto their required assurance levels, called object level of assurance (OLoA). Upon receiving an object access request, the requesterpsilas run-time contextual information is assessed to establish a requesterpsilas level of assurance (RLoA) denoting the level of confidence in identifying that requester. The access request is granted if RLoA ges OLoA. This paper describes the motivation for, and the design of, the CRAAC model, and reports a case study of further illustrate the model.
面向泛在环境的上下文风险感知访问控制模型
本文报告了我们正在进行的工作,为泛在计算(UbiComp)环境设计一个上下文风险感知访问控制(CRAAC)模型。CRAAC旨在增强当前解决方案的灵活性和通用性。风险评估和授权保证级别在CRAAC中起着关键作用。通过风险评估,根据资源的敏感程度和发生未经授权访问时的潜在影响将资源分类。已识别的风险被映射到它们所需的保证级别,称为对象保证级别(OLoA)。在接收到对象访问请求后,将评估请求者运行时上下文信息,以建立请求者保证级别(RLoA),表示识别该请求者的信任级别。如果RLoA为loa,则允许访问请求。本文描述了CRAAC模型的动机和设计,并报告了一个进一步说明该模型的案例研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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