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A Model-based Approach to Dynamic Self-Assessment for Automated Performance and Safety Awareness of Cyber-Physical Systems

机译:基于模型的网络物理系统自动性能和安全意识的动态自我评估方法

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摘要

Modern automotive vehicles represent one category of CPS (Cyber-Physical Systems) that are inherently time- and safety-critical. To justify the actions for quality-of-service adaptation and safety assurance, it is fundamental to perceive the uncertainties of system components in operation, which are caused by emergent properties, design or operation anomalies. From an industrial point of view, a further challenge is related to the usages of generic purpose COTS (Commercial-Off-The-Shelf) components, which are separately developed and evolved, often not sufficiently verified and validated for specific automotive contexts. While introducing additional uncertainties in regard to the overall system performance and safety, the adoption of COTS components constitutes a necessary means for effective product evolution and innovation. Accordingly, we propose in this paper a novel approach that aims to enable advanced operation monitoring and self-assessment in regard to operational uncertainties and thereby automated performance and safety awareness. The emphasis is on the integration of several modeling technologies, including the domain-specific modeling framework EAST-ADL, the A-G contract theory and Hidden Markov Model (HMM). In particular, we also present some initial concepts in regard to the usage performance and safety awareness for quality-of-service adaptation and dynamic risk mitigation.
机译:现代汽车代表了本质上对时间和安全至关重要的CPS(网络物理系统)的一类。为了证明采取服务质量调整和安全保证措施的合理性,至关重要的是要了解由于紧急特性,设计或操作异常引起的系统组件运行中的不确定性。从工业角度来看,进一步的挑战与通用COTS(现成商用)组件的使用有关,这些组件是单独开发和发展的,通常无法针对特定汽车环境进行充分验证。在引入有关整个系统性能和安全性的其他不确定性的同时,采用COTS组件是有效进行产品开发和创新的必要手段。因此,我们在本文中提出了一种新颖的方法,旨在实现对操作不确定性的高级操作监视和自我评估,从而实现自动化的性能和安全意识。重点是几种建模技术的集成,包括特定领域的建模框架EAST-ADL,A-G合同理论和隐马尔可夫模型(HMM)。特别是,我们还提出了有关服务质量适应和动态风险缓解的使用性能和安全意识的一些初始概念。

著录项

  • 作者

    Chen, DeJiu; Lu, Zhonghai;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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