• DocumentCode
    3515934
  • Title

    Model-based Approach to Validation and Verification of Flight Critical Software

  • Author

    Jaw, Link C. ; Homan, D. ; Crum, V. ; Chou, W. ; Keller, Kerstin ; Swearingen, Kevin ; Smith, Tim

  • Author_Institution
    Sci. Monitoring, Inc., Scottsdale, AZ
  • fYear
    2008
  • fDate
    1-8 March 2008
  • Firstpage
    1
  • Lastpage
    8
  • Abstract
    The time and cost associated with the development and certification of flight-critical software have been escalating at an alarming rate for modern, software-enabled air vehicles. This upward trend is expected to continue as future vehicles will be increasingly autonomous and intelligent. Affordable, efficient processes and tools are needed to control development costs and schedule, as well as to ensure the safety of these vehicles. This paper presents the results of a U. S. Air Force Research Laboratory (AFRL) sponsored project on the development of validation and verification (V&V) technologies for flight-critical software. The purpose of the project is to improve the affordability and safety for software V&V, specifically, for adaptive and/or mixed-criticality software. Adaptive software introduces uncertainties; mixed-criticality refers to the information passed between flight critical and mission critical software partitions, hence affecting in-flight adaptation (or control reconfiguration). The methodology developed in this project strongly suggests that an integrated, model-based approach be used in the V&V of adaptive software. In this approach, the same physical model is used for design, implementation, and testing, while emphasis has been placed on checking the uncertainty and the accuracy of the models, which often are implemented in flight control and health management software. In the paper, we use a scenario to illustrate the capabilities of the proposed V&V methodology. The scenario describes an unmanned air vehicle (UAV) executing an autonomous aerial refueling mission.
  • Keywords
    aerospace computing; program verification; adaptive software; autonomous aerial refueling; flight critical software; software validation; software verification; Certification; Costs; Intelligent vehicles; Laboratories; Mobile robots; Remotely operated vehicles; Software safety; Uncertainty; Unmanned aerial vehicles; Vehicle safety;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Aerospace Conference, 2008 IEEE
  • Conference_Location
    Big Sky, MT
  • ISSN
    1095-323X
  • Print_ISBN
    978-1-4244-1487-1
  • Electronic_ISBN
    1095-323X
  • Type

    conf

  • DOI
    10.1109/AERO.2008.4526572
  • Filename
    4526572