CA-UCON: a context-aware usage control model

Abulgader Almutairi, F. Siewe
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引用次数: 15

Abstract

Usage CONtrol (UCON) model is the latest major enhancement of the traditional access control models which enables mutability of subject and object attributes, and continuity of control on usage of resources. In UCON, access permission decision is based on three factors: authorisations, obligations and conditions. While authorisations and obligations are requirements that must be fulfilled by the subject and the object, conditions are subject and object independent requirements that must be satisfied by the environment. As a consequence, access permission may be revoked (and the access stopped) as a result of changes in the environment regardless of whether the authorisations and obligations re-quirements are met. This constitutes a major shortcoming of the UCON model in pervasive computing systems which constantly strive to adapt to environmental changes so as to minimise disruptions to the user. To overcome this limitation, this paper proposes a Context-Aware Usage CONtrol (CA-UCON) model which extends the traditional UCON model to enable adaptation to environmental changes in the aim of preserving continuity of access. When the authori-sations and obligations requirements are met by the subject and the object, and the conditions requirements fail due to changes in the environment or the system context, CA-UCON model triggers specific actions to adapt to the new situation. Besides the data protection. CA-UCON model so enhances the quality of services, striving to keep explicit interactions with the user at a minimum.
CA-UCON:一个上下文感知的使用控制模型
使用控制(UCON)模型是对传统访问控制模型的最新重大改进,它实现了主体和客体属性的可变性,以及对资源使用的连续性控制。在UCON中,访问许可决策基于三个因素:授权、义务和条件。授权和义务是主体和客体必须履行的要求,而条件是主体和客体独立的要求,必须由环境来满足。因此,无论是否满足授权和义务要求,访问许可都可能因环境变化而被撤销(并停止访问)。这构成了普适计算系统中UCON模型的一个主要缺点,该系统不断努力适应环境变化,以尽量减少对用户的干扰。为了克服这一限制,本文提出了一种上下文感知使用控制(CA-UCON)模型,该模型扩展了传统的UCON模型,以适应环境变化,以保持访问的连续性。当主体和客体都满足了授权和义务要求,而由于环境或系统上下文的变化导致条件要求失效时,CA-UCON模型触发特定的动作以适应新的情况。除了数据保护。CA-UCON模型因此提高了服务质量,努力将与用户的显式交互保持在最低限度。
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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