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Risk-Based Testing of Safety-Critical Embedded Systems Driven by Fault Tree Analysis

机译:基于风险的安全关键嵌入式系统对故障树分析驱动的安全性测试

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摘要

One important aspect of the quality assurance process of safety-critical embedded systems is verifying the appropriateness, correctness of the implementation and effectiveness of safety functions. Due to the rapid growth in complexity, manual verification activities are no longer feasible. This holds especially for testing. A popular method for testing such complex systems is model-based testing. Recent techniques for model-based testing do not sufficiently take into consideration the information derived from the safety analyses like Failure Mode and Effect Analysis and Fault Tree Analyses (FTA). In this paper, we describe an approach to use the results of FTA during the construction of test models, such that test cases can be derived, selected and prioritized according to the severity of the identified risks and the number of basic events that cause it. This approach is demonstrated on an example from the automation domain, namely a modular production system. We find that the method provides a significant increase in coverage of safety functions, compared to regular model based testing.
机译:安全关键嵌入式系统质量保证过程的一个重要方面正在验证安全功能的实施和有效性的适当性,正确性。由于复杂性快速增长,手动验证活动不再可行。这尤其适用于测试。一种用于测试此类复杂系统的流行方法是基于模型的测试。最近的基于模型的测试技术不充分考虑从安全模式和效果分析和故障树分析(FTA)等安全分析的信息。在本文中,我们描述了一种在测试模型构建过程中使用FTA结果的方法,使得可以根据所识别的风险的严重性和导致它的基本事件的数量来导出,选择和优先考虑测试用例。在自动化域的示例中对该方法进行了说明,即模块化生产系统。与常规模型的测试相比,我们发现该方法提供了安全功能覆盖率的显着增加。

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