Deriving safety properties of critical software from the system risk analysis, application to ground transportation systems

J. Boulanger, V. Delebarre, S. Natkin, J. Ozello
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引用次数: 4

Abstract

Safety properties of critical software are consequences of the application safety properties (i.e. the front collision of two trains must not occur), and of the system design choices. The paper presents the first results of a SNCF and CESIR joint research project whose purpose is to design a constructive and formal method to derive, at each design level, the safety properties of subsystems from the System Preliminary Hazard Analysis. One of the goals of this method is to obtain, at the lowest level, properties of the safety software which can be checked either by formal proof or by testing. The method relies on two concepts: the safety kernel, proposed by J. Rushby (1989), and a generalization and formalization of the notion of "restrictivity", used in classical safe hardware design. An application to the Maggaly (Lyon Subway) automatic pilot is presented.
从系统风险分析中得出关键软件的安全特性,并应用于地面运输系统
关键软件的安全特性是应用安全特性(即两列火车的正面碰撞不能发生)和系统设计选择的结果。本文介绍了SNCF和CESIR联合研究项目的第一个结果,该项目的目的是设计一种建设性的形式化方法,在每个设计级别上,从系统初步危害分析中得出子系统的安全特性。该方法的目标之一是在最低层次上获得安全软件的属性,这些属性可以通过正式证明或测试来检查。该方法依赖于两个概念:由J. Rushby(1989)提出的安全内核,以及经典安全硬件设计中使用的“限制性”概念的泛化和形式化。介绍了在里昂地铁自动驾驶系统中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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