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Real-Time Reliability Verification for UAV Flight Control System Supporting Airworthiness Certification

机译:支持适航性认证的无人机飞行控制系统的实时可靠性验证

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摘要

In order to verify the real-time reliability of unmanned aerial vehicle (UAV) flight control system and comply with the airworthiness certification standard, we proposed a model-based integration framework for modeling and verification of time property. Combining with the advantages of MARTE, this framework uses class diagram to create the static model of software system, and utilizes state chart to create the dynamic model. In term of the defined transformation rules, the MARTE model could be transformed to formal integrated model, and the different part of the model could also be verified by using existing formal tools. For the real-time specifications of software system, we also proposed a generating algorithm for temporal logic formula, which could automatically extract real-time property from time-sensitive live sequence chart (TLSC). Finally, we modeled the simplified flight control system of UAV to check its real-time property. The results showed that the framework could be used to create the system model, as well as precisely analyze and verify the real-time reliability of UAV flight control system.
机译:为了验证无人机飞行控制系统的实时可靠性并符合适航审定标准,我们提出了一种基于模型的时间特性建模和验证集成框架。结合MARTE的优点,该框架使用类图创建软件系统的静态模型,并利用状态图创建动态模型。根据定义的转换规则,可以将MARTE模型转换为正式的集成模型,并且还可以使用现有的正式工具来验证模型的不同部分。针对软件系统的实时规范,我们还提出了一种时态逻辑公式生成算法,该算法可以从对时间敏感的实时序列图(TLSC)中自动提取实时属性。最后,我们对无人机的简化飞行控制系统进行建模,以检查其实时性。结果表明,该框架可用于建立系统模型,并能准确地分析和验证无人机飞行控制系统的实时可靠性。

著录项

  • 期刊名称 PLoS Clinical Trials
  • 作者

    Haiyang Xu; Ping Wang;

  • 作者单位
  • 年(卷),期 2011(11),12
  • 年度 2011
  • 页码 e0167168
  • 总页数 21
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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