Aspect-Oriented Adaptation of Access Control Rules

T. Bures, I. Gerostathopoulos, P. Hnetynka, Stephan Seifermann, Maximilian Walter, R. Heinrich
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引用次数: 1

Abstract

Cyber-physical systems (CPS) and IoT systems are nowadays commonly designed as self-adaptive, endowing them with the ability to dynamically reconFigure to reflect their changing environment. This adaptation concerns also the security, as one of the most important properties of these systems. Though the state of the art on adaptivity in terms of security related to these systems can often deal well with fully anticipated situations in the environment, it becomes a challenge to deal with situations that are not or only partially anticipated. This uncertainty is however omnipresent in these systems due to humans in the loop, open-endedness and only partial understanding of the processes happening in the environment. In this paper, we partially address this challenge by featuring an approach for tackling access control in face of partially unanticipated situations. We base our solution on special kind of aspects that build on existing access control system and create a second level of adaptation that addresses the partially unanticipated situations by modifying access control rules. The approach is based on our previous work where we have analyzed and classified uncertainty in security and trust in such systems and have outlined the idea of access-control related situational patterns. The aspects that we present in this paper serve as means for application-specific specialization of the situational patterns. We showcase our approach on a simplified but real-life example in the domain of Industry 4.0 that comes from one of our industrial projects.
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面向方面的访问控制规则适配
如今,网络物理系统(CPS)和物联网系统通常被设计为自适应,赋予它们动态重新配置以反映其不断变化的环境的能力。这种适应性也涉及到安全性,这是这些系统最重要的特性之一。尽管就与这些系统相关的安全方面的适应性而言,目前的技术水平通常可以很好地处理环境中完全预期的情况,但处理没有或只有部分预期的情况就成为一项挑战。然而,这种不确定性在这些系统中是无处不在的,因为人类在循环中,开放性和对环境中发生的过程的部分理解。在本文中,我们通过采用一种方法来处理面对部分意外情况的访问控制,从而部分地解决了这一挑战。我们的解决方案基于特殊类型的方面,这些方面建立在现有的访问控制系统之上,并通过修改访问控制规则来创建第二级适应,以解决部分未预料到的情况。该方法基于我们之前的工作,我们分析和分类了此类系统中安全性和信任的不确定性,并概述了访问控制相关情境模式的思想。我们在本文中提出的这些方面可以作为情景模式的特定于应用程序的专门化的手段。我们通过工业4.0领域的一个简化但现实的例子来展示我们的方法,该例子来自我们的一个工业项目。
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