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Formal semantics of models for computational engineering: a case study on dynamic fault trees

机译:计算工程模型的形式语义:以动态故障树为例

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Computational modeling tools are critical to engineering. In the absence of a sufficiently complete, mathematically precise, abstract specification of the semantics of the modeling framework supported by such a tool, rigorous validation of the framework and of models built using it is impossible; there is no sound basis for program implementation, verification or documentation; the scientific foundation of the framework remains weak; and significant conceptual errors in framework definition and implementation are likely. Yet such specifications are rarely defined. We present an approach based on the use of formal specification and denotational semantics techniques from software engineering and programming language design. To illustrate the approach, we present elements of a formal semantics for a dynamic fault tree framework that promises to aid reliability analysis. No such specification of the meaning of dynamic fault trees has been defined previously. The approach revealed important shortcomings in the previous, informal definitions of the framework, and thus led to significant improvements, suggesting that formally specifying framework semantics is critical to effective framework design.
机译:计算建模工具对工程至关重要。在没有足够完整的数学上精确的数学上的,抽象规范的建模框架的语义,由这种工具支持,严格验证框架和使用它建造的模型是不可能的;程序实施,验证或文件没有合理的基础;该框架的科学基础仍然疲软;框架定义和实施中的重要概念错误很可能。然而,很少定义这些规格。我们基于使用软件工程和编程语言设计的形式规范和指示语义技术的使用方法。为了说明这种方法,我们为有助于可靠性分析的动态故障树框架提供了正式语义的元素。没有先前定义了这种动态故障树的含义的规范。该方法揭示了框架的先前非正式定义中的重要缺点,从而导致了重大改进,这表明正式指定框架语义对于有效的框架设计至关重要。

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