Modelling and Analysis of Fire Sprinklers by Verifying Dynamic Fault Trees

Shahid Khan, J. Katoen, Matthias Volk, Muhammad Ahmad Zafar, Falak Sher
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引用次数: 1

Abstract

We study the reliability analysis of fire sprinkler systems. We show that the characteristic features of Dugan's dynamic fault trees (DFTs) such as spare management, temporal ordering of failures and functional dependencies, are natural and adequate mechanisms to model various relevant phenomena in realistic fire sprinklers. For DFT analysis, we employ probabilistic model checking, an automated technique to assess reliability along with correctness. This is to date the most scalable, numerical DFT analysis technique. We show how standard reliability measures of fire sprinkler systems can be efficiently computed using the Storm model checker. In addition, we consider metrics beyond standard reliability, e.g., the probability to fail without going through a degradation phase and the worst-case reliability achieved after degradation. We illustrate our approach by fire sprinkler systems in shopping centers.
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基于动态故障树验证的消防喷头建模与分析
研究了消防喷水灭火系统的可靠性分析。研究表明,Dugan动态故障树(dft)的特征,如备用管理、故障时序排序和功能依赖,是模拟现实消防喷头中各种相关现象的自然和充分的机制。对于DFT分析,我们采用概率模型检查,这是一种评估可靠性和正确性的自动化技术。这是迄今为止最具扩展性的数值DFT分析技术。我们展示了如何使用Storm模型检查器有效地计算消防喷水灭火系统的标准可靠性措施。此外,我们考虑超出标准可靠性的度量,例如,不经过退化阶段而失效的概率和退化后达到的最坏情况可靠性。我们用购物中心的消防喷水灭火系统来说明我们的方法。
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