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Calculating the 'Probability of Failure on Demand' (PFD) of complex structures by means of Markov Models

机译:用马尔可夫模型计算复杂结构的“按需失效概率”(PFD)

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For the assessment of the "Safety Integrity Level" (SIL) in accordance with the standard EN 61508 it is among other things also necessary to calculate the "Probability of Failure on Demand" (PFD) of a safety related function. Thereto a set of equations is given in the standard mentioned above. If no appropriate formula is available, the calculation of the PFD can be done by means of a so called Markov Model. Especially for heterogeneous systems the Markov Model is an appropriate method to do the calculation of the PFD without the need of using a special formula. To show how to define the various states of a Markov Model and how to derive the appropriate transition probabilities from given device specifications, the PFD of a one channel system is calculated by using a Markov Model. It is shown that the result of the Markov Model is in accordance with the formula given in standard EN 61508. In a second step a Markov Model for a 1 out of 2 -System (1oo2) is presented. For multi channel systems the common cause failures have to be considered. It is shown that this leads to additional states in the Markov Model because the return to the initial state is different for common cause failures and failures of individual channels. Finally several calculation results produced with the Markov Model mentioned above are compared with those derived from the formulas given in the standard.
机译:为了根据标准EN 61508评估“安全完整性等级”(SIL),除其他事项外,还必须计算安全相关功能的“按需失效概率”(PFD)。在上述标准中给出了一组方程。如果没有合适的公式可用,则可以通过所谓的马尔可夫模型进行PFD的计算。特别是对于异构系统,马尔可夫模型是进行PFD计算的一种合适方法,而无需使用特殊公式。为了显示如何定义马尔可夫模型的各种状态以及如何从给定的设备规格中得出适当的转移概率,使用马尔可夫模型计算了一个通道系统的PFD。结果表明,马尔可夫模型的结果符合标准EN 61508中给出的公式。在第二步中,提出了2分系统(1oo2)中的1分的马尔可夫模型。对于多通道系统,必须考虑常见原因故障。结果表明,这导致了马尔可夫模型中的其他状态,因为对于常见原因故障和单个通道故障,返回初始状态是不同的。最后,将上述提到的马尔可夫模型产生的一些计算结果与从标准中给出的公式得出的结果进行比较。

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