A major part of the success of human-robots integration requires the development of robotic platforms capable of interacting in human environments. Human beings have an environment designed for their physical and morphological capacity, robots must adapt to these conditions. This paper presents a fuzzy-sliding hybrid grasp control for a five-finger robotic hand. As a design principle, the scheme takes into account the minimum force required on the object to prevent the object from slipping. The robotic hand uses force sensors on each finger to determine the grasp state. The control is designed with two control surfaces, one when there is slippage, the other when there is no slippage. For each surface, control rules are defined and unified by means of a fuzzy inference block. The proposed scheme is evaluated in the laboratory for different objects, which include spherical and cylindrical elements. In all cases, an excellent grasp was observed without producing deformations in the fragile objects.


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    Titel :

    Hybrid fuzzy-sliding grasp control for underactuated robotic hand


    Beteiligte:
    Martinez, Fredy (Autor:in) / Montiel, Holman (Autor:in) / Jacinto, Edwar (Autor:in)

    Erscheinungsdatum :

    2019-08-01


    Anmerkungen:

    doi:10.12928/telkomnika.v17i4.12678
    TELKOMNIKA (Telecommunication Computing Electronics and Control); Vol 17, No 4: August 2019; 2070-2075 ; 2302-9293 ; 1693-6930 ; 10.12928/telkomnika.v17i4



    Medientyp :

    Aufsatz (Zeitschrift)


    Format :

    Elektronische Ressource


    Sprache :

    Englisch



    Klassifikation :

    DDC:    629




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