RBML:一种用于安全关键型混合系统的精细行为建模语言

Zhangtao Chen, Jing Liu, Xi Ding, Miaomiao Zhang
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引用次数: 0

摘要

作为一种广泛使用的建模语言,AADL (Architecture Analysis and Design language)在安全关键型系统的设计中发挥着重要作用。它为描述系统架构提供了丰富的组件,并支持对性能关键属性的早期预测和重复分析。然而,AADL用来描述系统行为的方法主要基于自动机理论;因此,在对大型复杂系统进行建模和验证时,遇到状态空间爆炸问题是不可避免的。此外,由于缺乏描述行为细节的手段,AADL也难以支持对功能和非功能需求的准确分析和验证。本文提出了一种支持精细行为建模的RBML语言,以弥补AADL在行为建模和验证方面的不足。这种新的语言基于AADL,但扩展了详细描述各种行为的能力,并允许SMT (Satisfiability Modulo Theories)求解器验证构造的精细行为模型,从而在一定程度上缓解了状态空间爆炸问题。在百度阿波罗上的实验证明了我们所提出的方法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RBML: A Refined Behavior Modeling Language for Safety-Critical Hybrid Systems
As a widely used modeling language, AADL (Architecture Analysis and Design Language) plays an important role in designing safety-critical systems. It provides abundant components for describing system architecture and supports the early prediction and repetitive analysis of performance-critical attributes. However, the approach used by AADL to describe the system behavior is based mainly on automata theory; thus, encountering the state space explosion problem when modeling and verifying large and complex systems is inevitable. Furthermore, due to the lack of means to describe the behavior details, it is also difficult for AADL to support the accurate analysis and verification of functional and non-functional requirements. In this paper, we propose a language called RBML that supports refined behavior modeling to compensate for the behavior modeling and verification deficiencies of AADL. This new language is based on AADL but extends the ability to detail various behaviors and allows SMT (Satisfiability Modulo Theories) solvers to verify the constructed refined behavior model, thus alleviating the state space explosion problem to some extent. Experiments on Baidu Apollo are presented to demonstrate the feasibility of our proposed approach.
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