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Dynamic reliability of digital-based transmitters

机译:基于数字的发射机的动态可靠性

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摘要

Dynamic reliability explicitly handles the interactions between the stochastic behaviour of system components and the deterministic behaviour of process variables. While dynamic reliability provides a more efficient and realistic way to perform probabilistic risk assessment than "static" approaches, its industrial level applications are still limited. Factors contributing to this situation are the inherent complexity of the theory and the lack of a generic platform. More recently the increased use of digital-based systems has also introduced additional modelling challenges related to specific interactions between system components. Typical examples are the "intelligent transmitters" which are able to exchange information, and to perform internal data processing and advanced functionalities. To make a contribution to solving these challenges, the mathematical framework of dynamic reliability is extended to handle the data and information which are processed and exchanged between systems components. Stochastic deviations that may affect system properties are also introduced to enhance the modelling of failures. A formalized Petri net approach is then presented to perform the corresponding reliability analyses using numerical methods. Following this formalism, a versatile model for the dynamic reliability modelling of digital-based transmitters is proposed. Finally the framework's flexibility and effectiveness is demonstrated on a substantial case study involving a simplified model of a nuclear fast reactor.
机译:动态可靠性显式地处理系统组件的随机行为与过程变量的确定性行为之间的相互作用。尽管动态可靠性提供了比“静态”方法更有效,更现实的方法来进行概率风险评估,但其工业级应用仍然受到限制。造成这种情况的因素是理论的固有复杂性和缺乏通用平台。最近,基于数字的系统的使用增加也带来了与系统组件之间的特定交互相关的其他建模挑战。典型示例是能够交换信息并执行内部数据处理和高级功能的“智能发送器”。为了对解决这些挑战做出贡献,动态可靠性的数学框架被扩展为处理在系统组件之间处理和交换的数据和信息。还引入了可能影响系统属性的随机偏差以增强故障建模。然后提出一种形式化的Petri网方法,以使用数值方法执行相应的可靠性分析。遵循这种形式,提出了用于基于数字的发射机的动态可靠性建模的通用模型。最后,在涉及简化的核快速反应堆模型的大量案例研究中证明了该框架的灵活性和有效性。

著录项

  • 来源
    《Reliability Engineering & System Safety》 |2011年第7期|p.793-813|共21页
  • 作者单位

    Institut National de I'Environnement Industrie! et des Risques (1NERIS}, Pare Technologique Alata, BP 2, 60550 Verneuil-en-Halatte. France,Universite de Technologie de Troyes (UTT), Institut Charles Delaunay (ICD) & UMR CNRS 6279 STMR, 12 rue Marie Curie, BP 2060, 10010 Troyes Cedex, France;

    The Ohio State University (OSU), Nuclear Engineering Program, Department of Mechanical Engineering, Scott Laboratory, 201 W 19th Ave, Columbus OH 43210, USA;

    Universite de Technologie de Troyes (UTT), Institut Charles Delaunay (ICD) & UMR CNRS 6279 STMR, 12 rue Marie Curie, BP 2060, 10010 Troyes Cedex, France;

    Universite de Technologie de Troyes (UTT), Institut Charles Delaunay (ICD) & UMR CNRS 6279 STMR, 12 rue Marie Curie, BP 2060, 10010 Troyes Cedex, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dynamic reliability; probabilistic dynamics; digital-based system; intelligent transmitter; smart sensor; petri net; piecewise-deterministic markov process;

    机译:动态可靠性;概率动力学;数字系统;智能变送器;智能传感器;Petri网;分段确定马尔可夫过程;

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