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A controlled experiment for the empirical evaluation of safety analysis techniques for safety-critical software

机译:安全关键软件安全分析技术经验评估的对照实验

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摘要

Context: Today's safety critical systems are increasingly reliant on software. Software becomes responsible for most of the critical functions of systems. Many different safety analysis techniques have been developed to identify hazards of systems. FTA and FMEA are most commonly used by safety analysts. Recently, STPA has been proposed with the goal to better cope with complex systems including software. Objective: This research aimed at comparing quantitatively these three safety analysis techniques with regard to their effectiveness, applicability, understandability, ease of use and efficiency in identifying software safety requirements at the system level. Method: We conducted a controlled experiment with 21 master and bachelor students applying these three techniques to three safety-critical systems: train door control, anti-lock braking and traffic collision and avoidance. Results: The results showed that there is no statistically significant difference between these techniques in terms of applicability, understandability and ease of use, but a significant difference in terms of effectiveness and efficiency is obtained. Conclusion: We conclude that STPA seems to be an effective method to identify software safety requirements at the system level. In particular, STPA addresses more different software safety requirements than the traditional techniques FTA and FMEA, but STPA needs more time to carry out by safety analysts with little or no prior experience.
机译:背景:当今的安全关键系统越来越依赖于软件。软件负责系统的大多数关键功能。已经开发出许多不同的安全分析技术来识别系统的危害。 FTA和FMEA是安全分析人员最常使用的。最近,提出了STPA,其目标是更好地应对包括软件在内的复杂系统。目的:本研究旨在定量比较这三种安全分析技术在系统级别确定软件安全要求方面的有效性,适用性,可理解性,易用性和效率。方法:我们对21名硕士和学士生进行了一项受控实验,将这三种技术应用于三个安全关键系统:火车车门控制,防抱死制动和交通碰撞与回避。结果:结果表明,这些技术在适用性,可理解性和易用性方面没有统计学上的显着差异,但是在有效性和效率上却存在显着差异。结论:我们得出结论,STPA似乎是在系统级别识别软件安全要求的有效方法。特别是,与传统技术FTA和FMEA相比,STPA满足了更多不同的软件安全要求,但是STPA需要更多的时间来由很少或没有经验的安全分析师执行。

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