In this study, conducted during 42 V product development by Visteon, a Variable Shift Schedule (VSS) control strategy was designed and tested on a vehicle equipped with an Integrated Starter Generator (ISG) and a step ratio automatic transmission. The strategy incorporates two ratio change points (a high point and a low point) for a given vehicle speed and driver demand torque (measured by throttle position). By evaluating battery state of charge (SOC) and torque boost available from the electric drive system, the strategy can interpolate the earliest point for a change in ratio. It can also choose to 'lock' the toqure converter elements within the automatic transmission (AT) while continuing to provide consistent vehicle performance. The result is the ability to operate the internal combustion (IC) engine in a range of greater efficiency during the up-shift sequence. In addition the automatic transmission is able to remain in higher ratio ranges for extended durations. This effectively creates a vehicle that operates at levels of greater fuel efficiency and lower emissions. Computer Aided Engineering (CAE) modeling experiments are carried out to prove the validity of the proposed transmission control strategy and support the claims.


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    Titel :

    Variable shift schedule control for integrated starter generator equipped hybrid vehicles


    Weitere Titelangaben:

    Schaltstrategie für ein mit einem Integrierten Starter-Generator ausgestattetes Hybridfahrzeug


    Beteiligte:
    Denton, D.S. (Autor:in)


    Erscheinungsdatum :

    2001


    Format / Umfang :

    6 Seiten, 11 Bilder, 3 Quellen




    Medientyp :

    Aufsatz (Konferenz)


    Format :

    Print


    Sprache :

    Englisch





    2001-01-2496 Variable Shift Schedule Control for Integrated Starter Generator Equipped Hybrid Vehicles

    Denton, D. S. / Society of Automotive Engineers | British Library Conference Proceedings | 2001


    Variable-shift schedule control

    Denton,D.S. / Visteon Automotive Systems,US | Kraftfahrwesen | 2002



    INTEGRATED STARTER GENERATOR AND HYBRID POWER SYSTEM

    YU PING / WANG ZIFU / WANG HAIBIN | Europäisches Patentamt | 2021

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