控制软件中特定领域物理特性模型的运行时验证

A. D. Roo, Hasan Sözer, M. Aksit
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引用次数: 6

摘要

嵌入式系统的控制逻辑目前主要是在软件中实现的。这样的控制软件实现了物理特性的模型,比如系统组件之间的热交换。由于系统特性的演变和复杂性的增加,在这些模型中故障可能无法被检测到。因此,必须在运行时验证它们的准确性。在这种情况下,基于软件执行中的状态和/或事件的传统运行时验证技术是不够的。物理特征模型所暗示的行为不能映射到软件的行为属性。此外,使用通用编程语言实现使得这些模型难以定位和验证。本文提出了一种使用领域特定语言显式指定物理特征模型的新方法,通过检测和利用这些模型中的冗余来定义不一致性监视器,并使用面向方面的方法实现这些监视器。该方法应用于两个工业案例研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Runtime Verification of Domain-Specific Models of Physical Characteristics in Control Software
Control logic of embedded systems is nowadays largely implemented in software. Such control software implements, among others, models of physical characteristics, like heat exchange among system components. Due to evolution of system properties and increasing complexity, faults can be left undetected in these models. Therefore, their accuracy must be verified at runtime. Traditional runtime verification techniques that are based on states and/or events in software execution are inadequate in this case. The behavior suggested by models of physical characteristics cannot be mapped to behavioral properties of software. Moreover, implementation in a general-purpose programming language makes these models hard to locate and verify. This paper presents a novel approach to explicitly specify models of physical characteristics using a domain-specific language, to define monitors for inconsistencies by detecting and exploiting redundancy in these models, and to realize these monitors using an aspect-oriented approach. The approach is applied to two industrial case studies.
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