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Probabilistic Analysis of Timing Constraints in Autonomous Automotive Systems Using Simulink Design Verifier

机译:使用Simulink设计验证者自主汽车系统时序约束的概率分析

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Modeling and analysis of timing constraints is crucial in automotive systems. EAST-ADL is a domain specific architectural language dedicated to safety-critical automotive embedded system design. In most cases, a bounded number of violations of timing constraints in systems would not lead to system failures when the results of the violations are negligible, called Weakly-Hard (WH). We have previously specified EAST-ADL timing constraints in Clock Constraint Specification Language (CCSL) and transformed timed behaviors in CCSL into formal models amenable to model checking. Previous work is extended in this paper by including support for probabilistic analysis of timing constraints in the context of WH: Probabilistic extension of CCSL, called PrCCSL, is defined and the EAST-ADL timing constraints with stochastic properties are specified in PrCCSL. The semantics of the extended constraints in PrCCSL is translated into Proof Objective Models that can be verified using SIMULINK DESIGN VERIFIER. Furthermore, a set of mapping rules is proposed to facilitate guarantee of translation. Our approach is demonstrated on an autonomous traffic sign recognition vehicle case study.
机译:时序约束的建模与分析在汽车系统中至关重要。 East-Adl是一种专门用于安全关键的汽车嵌入式系统设计的域特定架构语言。在大多数情况下,当违规的结果可以忽略不计时,系统中的时序约束的违规时的定时约束的违规行为不会导致系统故障,称为弱硬(WH)。我们以前指定了时钟约束规范语言(CCSL)的East-ADL时序约束,并将CCSL中的定时行为转换为适用于模型检查的正规模型。本文在本文中延长了以前的作品,包括支持对WH的上下文中的时序约束的概率分析:CCSL的概率扩展,被称为PRCCSL,并在PRCCSL中指定了具有随机性质的East-ADL定时约束。 PRCCSL中的扩展约束的语义被翻译成可以使用Simulink设计验证程序验证的证明目标模型。此外,提出了一组映射规则,以促进翻译保证。我们的方法在自主交通标志识别车案例研究中证明。

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