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Methods of Increasing Modelling Power for Safety Analysis, Applied to a Turbine Digital Control System

机译:涡轮数字控制系统中用于安全分析的增加建模能力的方法

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The paper describes a probabilistic approach based on methods of increasing modelling power and different analytical tractability, to analyse safety of turbine digital control system. First, a Fault-Tree (FT) has been built to model the system, assuming independent failures and binary states of its components. To include multi-states and sequentially dependent failures of the system components and to perform diagnoses, FT has been converted into a Bayesian Net. Moreover, to accommodate repair activity, FT has been converted into a Stochastic Petri Net. Due to the very large space of states of the resulting model, a coloured Petri Net model have been built to alleviate the state explosion problem. Safety measures have been computed, referring to the emergent standard IEC 61508. The applicability, the limits and the main selection criteria of the investigated methods are provided.
机译:本文介绍了一种基于增加建模能力和不同分析可处理性的方法的概率方法,以分析涡轮数字控制系统的安全性。首先,已经建立了一个故障树(FT)来对系统进行建模,并假设其独立故障和组件的二进制状态。为了包括系统组件的多状态故障和依序导致的故障并执行诊断,将FT转换为贝叶斯网络。此外,为了适应维修活动,英国电信已将FT转换为随机Petri网。由于所得模型的状态空间非常大,因此已构建了彩色Petri网模型来缓解状态爆炸问题。已参照新兴标准IEC 61508计算了安全措施。提供了所研究方法的适用性,限制和主要选择标准。

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