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On The Use Of Non-coherent Fault Trees In Safety And Security Studies

机译:非相干故障树在安全研究中的应用

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This paper gives some insights on the usefulness of non-coherent fault trees in system modelling from both the point of view of safety and security. A safety-related system can evolve from the working states to failed states through degraded states, i.e. working state, but in a degraded mode. In practical applications the degraded states may be of particular interest due e.g. to the associated risk increase or the different types of consequent actions. The top events definitions of such states contain the working conditions of some sub-systems/ components. How the use of non-coherent fault trees can greatly simplify both the modelling and quantification of these states is shown in this paper. Some considerations about the interpretation of the importance indexes of negated basic events are also briefly described. When dealing with security applications, there is a need to cope not only with stochastic events, such as component failures and human errors, but also with deliberate intentional actions, whose successes might be characterised by high probability values. Different mutually exclusive attack scenarios may be envisaged for a given system. Hence, the essential feature of a fault tree analyser is the capability to determine the exact value of the top event probability containing mutually exclusive events. It is also shown that in these cases the use of non-coherent fault trees allows solving the problem with limited effort.
机译:本文从安全性和安全性的角度给出了非相干故障树在系统建模中的有用性的一些见解。与安全相关的系统可以通过降级状态(即工作状态)从工作状态演变为故障状态,但是处于降级模式。在实际应用中,退化状态可能是特别令人关注的,例如由于。相关的风险增加或不同类型的后续行动。这些状态的主要事件定义包含某些子系统/组件的工作条件。本文展示了如何使用非相干故障树极大地简化这些状态的建模和量化。还简要介绍了有关否定基本事件重要性指标解释的一些注意事项。在处理安全应用程序时,不仅需要应对随机事件,例如组件故障和人为错误,还需要应对故意的故意行为,其成功可能具有很高的概率值。对于给定的系统,可以设想不同的互斥攻击方案。因此,故障树分析器的基本特征是能够确定包含互斥事件的最高事件概率的准确值。还表明,在这些情况下,使用非相干故障树可以用有限的精力解决问题。

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