Increasing numbers of automotive control systems are being designed as distributed systems, with critical functions linked by electronic communications. This includes X-by-wire systems, which seek to replace mechanical or hydraulic linkages with electrical or communications links. These systems raise a number of new challenges: Safety is a function of the whole system rather than any one system feature. Thus, safety analysis and understanding must occur at the (complex) system level. A robust design process is essential to ensure that complex system issues and critical analysis occur at the right development stage and cover all appropriate parts of the system. This article provides a case study of a development project to show how these and other issues can be addressed. We describe the development of a communications network for a safety-related engine application that consists of a central electronic control unit (ECU) and a number of distributed actuators that are controlled via the network. We apply several techniques, such as hazard and scheduling analysis, to resolve safety and reliability issues.


    Access

    Access via TIB

    Check availability in my library

    Order at Subito €


    Export, share and cite



    Title :

    Design and analysis of a robust real-time engine control network


    Contributors:
    Ellims, M. (author) / Parker, S. (author) / Zurlo, J. (author)

    Published in:

    IEEE Micro ; 22 , 4 ; 20-27


    Publication date :

    2002


    Size :

    8 Seiten, 8 Quellen




    Type of media :

    Article (Journal)


    Type of material :

    Print


    Language :

    English




    Real time engine dynamic analysis and control

    Hogh,G. / Powell,B.K. / Lawson,G.P. | Automotive engineering | 1988


    Real Time Engine Dynamic Analysis And Control

    Powell, Barry K. / Lawson, Gerald P. / Hogh, Gottfried | SAE Technical Papers | 1988


    Robust scheduler design for automatic mechanical transmission real-time control

    Chen,L. / Xi,G. / Lu,T.L. et al. | Automotive engineering | 2006


    Jitter-Robust LQG Control and Real-Time Scheduling Co-Design

    Xu, Yang / Cervin, Anton / Årzén, Karl-Erik | BASE | 2018

    Free access

    Robust Scheduler Design for Automatic Mechanical Transmission Real-time Control

    Xi, Gang / Zhang, Jianwu / Chen, Li et al. | SAE Technical Papers | 2006