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Method to assess and optimise dependability of complex macro-systems: Application to a railway signalling system

机译:评估和优化复杂宏系统可靠性的方法:在铁路信号系统中的应用

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摘要

Achieving a high degree of dependability in complex macro-systems is challenging. Because of the large number of components and numerous independent teams involved, an overview of the global system performance is usually lacking to support both design and operation adequately. A functional failure mode, effects and criticality analysis (FMECA) approach is proposed to address the dependability optimisation of large and complex systems. The basic inductive model FMECA has been enriched to include considerations such as operational procedures, alarm systems, environmental and human factors, as well as operation in degraded mode. Its implementation on a commercial software tool allows an active linking between the functional layers of the system and facilitates data processing and retrieval, which enables to contribute actively to the system optimisation. The proposed methodology has been applied to optimise dependability in a railway signalling system. Signalling systems are typical example of large complex systems made of multiple hierarchical layers. The proposed approach appears appropriate to assess the global risk- and availability-level of the system as well as to identify its vulnerabilities. This enriched-FMECA approach enables to overcome some of the limitations and pitfalls previously reported with classical FMECA approaches.
机译:在复杂的宏系统中实现高度的可靠性具有挑战性。由于涉及的组件众多,并且涉及许多独立的团队,因此通常缺乏对全局系统性能的概述,无法充分支持设计和操作。为了解决大型复杂系统的可靠性优化问题,提出了一种功能失效模式,影响和临界度分析(FMECA)方法。基本的归纳模型FMECA已得到扩展,包括操作程序,警报系统,环境和人为因素以及降级模式下的操作等注意事项。它在商用软件工具上的实现允许在系统功能层之间进行主动链接,并促进数据处理和检索,从而可以为系统优化做出积极贡献。所提出的方法已被应用于优化铁路信号系统中的可靠性。信令系统是由多层结构组成的大型复杂系统的典型示例。拟议的方法似乎适合评估系统的全局风险和可用性级别以及确定其漏洞。这种丰富的FMECA方法可以克服传统FMECA方法先前报道的一些局限性和陷阱。

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