面向移动计算的位置感知语义访问控制方法

Luokai Hu, Zhenyu Huang, Fang Deng, Ke Yan, Jin Liu
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引用次数: 0

摘要

随着移动计算的发展,需要一种更加智能的位置感知访问控制方法,既能保护位置信息的隐私,又能减少访问控制决策的频率。将语义访问控制方法引入到位置感知访问控制(LAAC)中。首先,我们使用语义区域代替物理位置来进行授权决策,减少了授权决策的频率。实验对象的确切物理位置不会被暴露。其次,针对不同安全域语义区域的不同表示,采用本体聚类来表示语义空间信息。建立了安全域本体(SDO)和安全域间的桥接本体(BO)。然后利用本体聚类作为知识库,对XACML语言的物理区域进行标注。最后,提出了基于位置感知语义的移动计算访问控制模型和框架。提出的位置感知语义访问控制(LASAC)方法为移动网络环境下的位置感知访问控制提供了较好的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards a Location Aware Semantic Access Control Approach for Mobile Computing
With the development of mobile computing, a more intelligent location aware access control approach which can not only protect the privacy of location information but also reduce the frequency of access control decision is needed. This paper brought semantic access control approach into the Location Aware Access Control (LAAC). First, we used semantic area to substitute physical location for the authorization decision, reducing the frequency of authorization decisions. The exact physical location of the subject would not be exposed. Secondly, for the different representation of semantic area of different security domains, we used ontology cluster to represent semantic spatial information. We established security domain ontology (SDO) and bridge ontology (BO) between the security domains. And then we used such ontology cluster as knowledge base and added annotation to the physical areas of XACML language. Finally, the model and framework of location aware semantics based access control for mobile computing is proposed. The proposed location aware semantic access control(LASAC) approach provides a better solution for location aware access control in mobile network environment.
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