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Quantitative Aspects of Common Cause Failures and Review of Commonly Applied Models

机译:常见原因失败的定量方面和常用模型的审查

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Multiple failures of components due to shared causes, also known as Common Cause Failures (CCF), comprise an important class of failure types. These have to be taken into account in any serious assessment of safety critical systems deploying any redundancy concept. Whereas a qualitative assessment of CCF can be regarded as common practice, the exact numerical impact of CCF is usually less widely understood. Explicit representation of CCF is quite cumbersome and usually involves complex graphical representations within fault trees and RBDs. Focusing on a correct derivation of RAM-data rather than on a comprehensive common cause analysis, an implicit representation of CCF therefore is often preferred but involves in-depth knowledge of underlying mathematical models. This paper aims to enable safety experts to make a fast, simple but effective RAM-analysis including CCF. Popular CCF models are reviewed together with their advantages and disadvantages based on the long-term experience of a supplier in the context of a large European ATM project. The single-parameter beta-factor model is explained in detail and demonstrated to be most effective for typical ATM applications. Based on this model, results are given in terms of representative figures depicting the influence of CCF on various typical real world availability requirements.
机译:由于共享原因,也称为常见原因失败(CCF)的多个故障包括一类重要的故障类型。这些必须考虑到部署任何冗余概念的安全关键系统的任何严重评估。鉴于CCF的定性评估可被视为常见做法,CCF的确切数值影响通常不太广泛理解。 CCF的显式表示非常麻烦,通常涉及故障树和RBD中的复杂图形表示。因此,专注于RAM数据的正确推导而不是全面的常见原因分析,因此通常优先考虑CCF的隐式表示,但涉及对底层数学模型的深入知识。本文旨在使安全专家能够快速,简单但有效的RAM分析,包括CCF。根据大型欧洲ATM项目的背景下的供应商的长期经验,他们的利益和缺点将热门CCF型号一起审查。详细解释了单个参数β系数模型,并对典型的ATM应用进行了最有效。基于该模型,在代表性数据方面给出了结果,描绘了CCF对各种典型的真实世界可用性要求的影响。

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