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Reliability-driven Automotive Software Deployment based on a Parametrizable Probabilistic Model Checking

机译:可靠性驱动的汽车软件部署基于参数化概率模型检查

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Embedded systems span a wide range from a small platform of sensors and actuators to distributed systems combining several interacting nodes. Designing such systems includes hardware parts and software parts. The software part acquires in importance since it handles the resources and services to interact with the hardware part. The paper introduces a novel deployment-decision making based on PRISM probabilistic model checker that takes software components and the physical platform to produce a set of deployment candidates. Starting from System Modeling Language (SysML), the process includes mechanisms to extract hardware and software features and carry out a set of deployment candidates. Each candidate should satisfy the reliability property written in Probabilistic Computation Tree Logic. Formally, we capture the underlying semantics of software blocks behaviour expressed as an activity diagram and their generated PRISM code to prove the approach soundness. Illustration relies on the automotive control system to show the applicability of the proposed approach.
机译:嵌入式系统跨越多个传感器和执行器的宽范围,以分布式系统组合多个交互节点。设计此类系统包括硬件零件和软件部件。软件部件在重视以来,它处理了与硬件部分交互的资源和服务。本文介绍了基于棱镜概率模型检查器的新型部署决策,该模型检查软件组件和物理平台来生成一组部署候选者。从系统建模语言(SYSML)开始,该过程包括提取硬件和软件功能的机制,并执行一组部署候选者。每个候选人都应该满足概率计算树逻辑中编写的可靠性属性。正式地,我们捕获作为活动图表的软件块行为的底层语义以及它们所生成的棱镜代码来证明方法。插图依靠汽车控制系统,以显示所提出的方法的适用性。

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