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Integrating software behavior into dynamic probabilistic risk assessment.

机译:将软件行为集成到动态概率风险评估中。

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摘要

Software plays an increasingly important role in modern safety-critical systems. Although research has been done to integrate software into the classical Probability Risk Assessment (PRA) framework, current PRA practice overwhelmingly neglects the contribution of software to system risk. The objective of this research is to develop a methodology to integrate software contributions in the Dynamic Probabilistic Risk Assessment (DPRA) environment.; DPRA is considered to be the next generation of PRA techniques. It is a set of methods and techniques in which simulation models that represent the behavior of the elements of a system are exercised in order to identify risks and vulnerabilities of the system. DPRA allows consideration of dynamic interactions of system elements and physical variables. The fact remains, however, that modeling software for use in the DPRA framework is also quite complex and very little has been done to address the question directly and comprehensively.; This dissertation describes a framework and a set of techniques to extend the DPRA approach to allow consideration of the software contributions on system risk. The framework includes a software representation, an approach to incorporate the software representation into the DPRA environment SimPRA, and an experimental demonstration of the methodology.; This dissertation also proposes a framework to simulate the multi-level objects in the simulation based DPRA environment. This is a new methodology to address the state explosion problem. The results indicate that the DPRA simulation performance is improved using the new approach. The entire methodology is implemented in the SimPRA software. An easy to use tool is developed to help the analyst to develop the software model.; This study is the first systematic effort to integrate software risk contributions into the dynamic PRA environment.
机译:软件在现代安全关键型系统中扮演着越来越重要的角色。尽管已经进行了将软件集成到经典的概率风险评估(PRA)框架中的研究,但是当前的PRA做法绝大多数都忽略了软件对系统风险的贡献。这项研究的目的是开发一种方法,以在动态概率风险评估(DPRA)环境中整合软件贡献。 DPRA被认为是PRA的下一代技术。它是一组方法和技术,在这些方法和技术中,使用代表系统元素行为的仿真模型来识别系统的风险和漏洞。 DPRA允许考虑系统元素和物理变量的动态交互。然而,事实仍然存在,用于DPRA框架的建模软件也相当复杂,几乎没有做过直接和全面地解决该问题的工作。本文介绍了一种扩展DPRA方法的框架和一套技术,以考虑软件对系统风险的影响。该框架包括软件表示,将软件表示合并到DPRA环境SimPRA中的方法以及该方法的实验性演示。本文还提出了一种在基于仿真的DPRA环境下对多级对象进行仿真的框架。这是解决状态爆炸问题的新方法。结果表明,使用新方法可以改善DPRA仿真性能。整个方法在SimPRA软件中实现。开发了一种易于使用的工具,以帮助分析师开发软件模型。这项研究是将软件风险贡献集成到动态PRA环境中的第一个系统性工作。

著录项

  • 作者

    Zhu, Dongfeng.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering System Science.; Computer Science.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 系统科学;自动化技术、计算机技术;
  • 关键词

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