• DocumentCode
    3697115
  • Title

    Offline Analysis of Independent Guarded Assertions in Automotive Integration Testing

  • Author

    Guillermo Rodriguez-Navas;Avenir Kobetski;Daniel Sundmark;Thomas Gustafsson

  • Author_Institution
    Malardalen Univ., Vasteras, Sweden
  • fYear
    2015
  • Firstpage
    1066
  • Lastpage
    1073
  • Abstract
    The size and complexity of software in automotive systems have increased steadily over the last decades. Modern vehicles typically contain numerous electrical control units (ECUs), and more and more features require real-time interaction between several dedicated ECUs (e.g., gearbox, brake and engine control units) in order to perform their tasks. Since system safety and reliability must not be adversely affected by this increase in complexity, proper quality assurance is a must. Such quality assurance is often performed by testing the system in different levels of integration throughout the development process. However, the growth of complexity of the system under test aslo affects the testing, making it laborious, difficult and costly. This paper presents a novel method for efficient offline analysis of traces, which has been especially tailored for integration testing of automotive systems. The method exploits the recently defined concept of independent guarded assertion in order to formally describe the events that are relevant for the analysis as well as the expected behavior in those events. The offline analysis is implemented using a standard commercial model checker and has shown good performance in the conducted experiments.
  • Keywords
    "Testing","Automotive engineering","Automata","Real-time systems","Analytical models","Complexity theory","Software"
  • Publisher
    ieee
  • Conference_Titel
    High Performance Computing and Communications (HPCC), 2015 IEEE 7th International Symposium on Cyberspace Safety and Security (CSS), 2015 IEEE 12th International Conferen on Embedded Software and Systems (ICESS), 2015 IEEE 17th International Conference on
  • Type

    conf

  • DOI
    10.1109/HPCC-CSS-ICESS.2015.251
  • Filename
    7336310