The paper presents an innovative dual purpose automotive suspension topology, combining for the first time the active damping qualities with mechanical vibrations power regeneration capabilities. The new configuration consists of a linear generator as an actuator, a power processing stage based on a gyrator operating under sliding mode control and dynamics controllers. The researched design is simple and energetically efficient, enables an accurate force-velocity suspension characteristic control as well as energy regeneration control, with no practical implementation constraints imposed over the theoretical design. Active damping is based on Skyhook suspension control scheme, which enables overcoming the passive damping tradeoff between high- and low-frequency performance, improving both body isolation and the tire's road grip. The system-level design includes configuration of three system operation modes: passive, semi-active or fully active damping, all using the same electro-mechanical infrastructure, and each focusing on different objective: dynamics improvement or power regeneration. Conclusively, the innovative hybrid suspension is theoretically researched, practically designed and analysed, and proven to be feasible as well as profitable in the aspects of power regeneration, vehicle dynamics improvement and human health risks reduction.


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    Title :

    Actively controlled vehicle suspension with energy regeneration capabilities


    Additional title:

    Aktiv geregelte Fahrzeugfederung mit Energierückgewinnungsfähigkeiten


    Contributors:

    Published in:

    Vehicle System Dynamics ; 49 , 4-6 ; 833-854


    Publication date :

    2011


    Size :

    22 Seiten, 18 Bilder, 2 Tabellen, 14 Quellen




    Type of media :

    Article (Journal)


    Type of material :

    Print


    Language :

    English




    Actively controlled vehicle suspension with energy regeneration capabilities

    David,S.B. / Bobrovsky,B.Z. / Tel Aviv Univ.,IL | Automotive engineering | 2011



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