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Comparing Automatic Allocation of Safety Integrity Levels in the Aerospace and Automotive Domains

机译:在航空航天和汽车领域比较安全完整性级别的自动分配

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Safety standards guide the development of systems whose operation raises concerns about safety. We focus our attention on the automotive and aerospace standards, ISO 26262 and ARP4754-A respectively. Both standards advocate a process for controlled allocation of safety integrity requirements that starts early in the design and continues as the system architecture is being refined. This procedure may generate a plethora of feasible design variants, all satisfying system safety requirement, but each having different allocations of integrity to components and different costs. In this paper, we describe a model-based safety analysis method for automating this allocation process in a way that cost-optimal design variants are selected. We show that the proposed method is generic and can satisfy both the automotive and aerospace safety standards with application to both industries. We apply the method using both standards on a common case study and discuss the differences in the results obtained, reflecting on the commonalities and differences between the two standards.
机译:安全标准指导着系统的发展,这些系统的运行引起了人们对安全性的关注。我们将注意力集中在汽车和航空航天标准(分别为ISO 26262和ARP4754-A)上。这两个标准都倡导了一种对安全完整性要求进行受控分配的过程,该过程始于设计初期,并随着系统体系结构的完善而持续。此过程可能会产生大量可行的设计变体,全部满足系统安全性要求,但每个变体对组件的完整性分配和成本不同。在本文中,我们描述了一种基于模型的安全性分析方法,该方法可通过选择成本最佳的设计变量来自动执行此分配过程。我们表明,所提出的方法是通用的,并且可以满足汽车和航空安全标准,并应用于两个行业。我们在共同的案例研究中使用这两种标准的方法,并讨论了所得结果的差异,以反映两种标准之间的共性和差异。

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