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A (Proto) Logical Basis for the Notion of a Structured Argument in a Safety Case

机译:安全案例中结构化论点的(原始)逻辑基础

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The introduction of safety cases was a step in the right direction in regards to safety assurance. As presently practiced, safety cases aim at making a serious attempt to explicate, and to provide some structure for, the reasoning involved in assuring that a system is safe, generally in terms of so-called structured arguments. However, the fact current notations for expressing these structured arguments have no formal semantics and, at best, are loosely linked to goal structuring ideas and to Toulmin's notion of an argument pattern, is a crucial issue to be addressed. History clearly demonstrates that languages that have no formal semantics are deficient in relation to the requirements of a serious approach to engineering. In other words, one can only go so far with intuition, and certainly not far enough to justify the safety of complex systems, such as Cyber Physical Systems or autonomous cars. By rehearsing Gentzen's program for formalizing mathematical reasoning, his famous Calculus of Natural Deduction, we show how we can begin a program of formalizing safety reasoning by developing a working definition of a structured argument in a safety case and a calculus for safety reasoning.
机译:引入安全案例是在安全保证方面朝着正确方向迈出的一步。按照目前的实践,安全案例的目的是认真地尝试进行解释,并为确保系统安全的推理提供某种结构,通常以所谓的结构化论点为依据。但是,当前用于表达这些结构化论点的符号没有正式的语义,并且充其量与目标结构化思想和图尔明的论点模式概念之间没有多大关系,这是一个亟待解决的关键问题。历史清楚地表明,没有正式语义的语言在严肃的工程方法要求方面是不足的。换句话说,一个人只能凭直觉走得那么远,而且肯定不足以证明复杂系统(例如网络物理系统或自动驾驶汽车)的安全性。通过演练Gentzen的数学推理形式化程序,即他著名的自然演算微积分,我们展示了如何通过开发安全案例中的结构性论证的有效定义以及安全推理的演算来启动形式化安全推理的程序。

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