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A fine-grained context-aware access control model for health care and life science linked data

机译:用于医疗保健和生命科学关联数据的细粒度上下文感知访问控制模型

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Health Care and Life Sciences (HCLS) have long been a test-bed for the standards proposed by the W3C to build the Semantic Web. One of the challenges to HCLS Linked Data is access control. In this paper, we present a fine-grained context-aware access model for HCLS Linked Data based on Semantic Web tools. The model consists of two basic components: ontology base and access policy. Ontology base refers to a set of ontologies that include subject ontology, resource ontology, environment ontology, and action ontology. In the access policy module, we describe the access policy with eXtensible Access Control Markup Language (XACML) model, which allows users to achieve access rule reproduction by defining the semantic scope and inference rules among different entities. Results of the analysis indicate that indicates that our model expands the scopes of authorization rules for users. Inference of semantic authorization rules is also realized. These rules enable fine-grained access to data and meet the need for dynamic change of HCLS Linked Data. Finally, we show the process of authorization and present a system framework. Simulation experiments verify the acceptability of our model in protecting secured data.
机译:长期以来,医疗保健和生命科学(HCLS)一直是W3C提出的用于构建语义网的标准的试验台。 HCLS链接数据的挑战之一是访问控制。在本文中,我们提出了一种基于语义Web工具的HCLS链接数据的细粒度上下文感知访问模型。该模型由两个基本组件组成:本体库和访问策略。本体基础是指一组包括主题本体,资源本体,环境本体和动作本体的本体。在访问策略模块中,我们使用可扩展访问控制标记语言(XACML)模型描述访问策略,该模型允许用户通过定义不同实体之间的语义范围和推理规则来实现访问规则的再现。分析结果表明,我们的模型扩展了用户的授权规则范围。还实现了语义授权规则的推断。这些规则可实现对数据的细粒度访问,并满足动态更改HCLS链接数据的需求。最后,我们展示了授权过程并提出了系统框架。仿真实验证明了我们的模型在保护安全数据方面的可接受性。

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