首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part O. Journal of Risk and Reliability >Combining system-theoretic process analysis and availability assessment: A subsea case study
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Combining system-theoretic process analysis and availability assessment: A subsea case study

机译:组合系统理论过程分析和可用性评估:海底案例研究

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摘要

Hazard identification methods are important tools to verify that the system is able to operate according to specifications under different operating conditions. Unfortunately, many of the traditional methods are not adequate to capture possible dysfunctional behavior of complex systems that involve highly coupled parts, non-linear interactions and software-intensive functionalities. The rather recent method named system-theoretic process analysis (STPA) is one promising candidate to improve the coverage of hazard identification in complex and software-intensive system. Still, there is no guideline for utilizing system-theoretic process analysis output to evaluate the potential of loss, which is important for basis of decision-making about system configuration and equipment selection. The focus of this article is to place an interface between system-theoretic process analysis and reliability, availability and maintainability (RAM) analysis. The approach named STPA-RAM model is proposed to translate feedback control loops into stochastic Petri nets for discrete event simulation. The proposed approach is demonstrated with a simple case related to subsea design concept. The major conclusion is that STPA-RAM model extends the application of system-theoretic process analysis, while also improving and as such reducing completeness uncertainty and model uncertainty, associated with input data and information for reliability, availability and maintainability analysis.
机译:危险识别方法是验证系统是否能够根据不同操作条件下的规格操作的重要工具。遗憾的是,许多传统方法不足以捕获涉及高耦合部件,非线性相互作用和软件密集功能的复杂系统的可能功能失调行为。最近命名的系统理论过程分析(STPA)是一个有希望的候选者,以改善复杂和软件密集型系统中危害识别的覆盖范围。尽管如此,没有使用系统理论过程分析输出来评估损失潜力的指导,这对于关于系统配置和设备选择的决策来说是重要的。本文的重点是在系统理论过程分析和可靠性,可用性和可维护性(RAM)之间进行界面。提出了名为STPA-RAM模型的方法,将反馈控制循环转化为用于离散事件仿真的随机Petri网。拟议的方法是用与海底设计理念有关的简单案例来证明。主要结论是STPA-RAM模型扩展了系统理论过程分析的应用,同时还改善了与输入数据和可靠性,可用性和可维护性分析的信息和信息相关的完整性不确定性和模型不确定性。

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