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Mathematical Modelling in Air Traffic Management Security

机译:空中交通管理安全中的数学建模

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This paper addresses the potential of mathematical modelling in support of the classical security risk assessment and treatment approach. Classical security risk assessment and control selection is strongly based on expert judgment. Within the context of large scale system implementation in air traffic management, there is only a limited availability of resources during the system engineering phase. From that perspective an alternative approach based on system engineering artefacts is highly desirable. Furthermore, robust mathematical modelling can support in the verification of security risk mitigation decisions and provide a means to address trade-off decisions between a variety of different security controls. The research reported in this paper is based on game-theoretic concepts and graph theory. The security control selection problem is modelled as a multi-objective optimization problem. Two interwoven models are developed for addressing the security risk assessment problem of a system. The internal model describes the actual system and its parameters, while the external model is used to describe possible threat scenarios. These models and the modelling technique is instantiated for a simple airport context, and the essential building blocks of the method are discussed on this example. The work reported in this paper shows the general feasibility of a mathematically founded approach to security risk assessment in large-scale system engineering. The proposed modelling approach forms the basis for the development of a dynamic security risk management capability as part of a recently started European research project on global air traffic management security.
机译:本文探讨了数学建模在支持经典安全风险评估和处理方法方面的潜力。经典的安全风险评估和控制选择很大程度上基于专家的判断。在空中交通管理中大规模实施系统的背景下,在系统工程阶段只有有限的资源可用性。从这个角度来看,非常需要一种基于系统工程伪像的替代方法。此外,强大的数学建模可以支持安全风险缓解决策的验证,并提供一种解决各种不同安全控制之间权衡决策的方法。本文报道的研究基于博弈论概念和图论。安全控制选择问题被建模为多目标优化问题。开发了两种交织模型来解决系统的安全风险评估问题。内部模型描述实际系统及其参数,而外部模型用于描述可能的威胁情况。这些模型和建模技术针对简单的机场环境进行了实例化,并在此示例中讨论了该方法的基本构造块。本文报道的工作表明,在大规模系统工程中,数学上建立安全风险评估方法的一般可行性。拟议的建模方法构成了动态安全风险管理功能开发的基础,这是最近启动的有关全球空中交通管理安全的欧洲研究项目的一部分。

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