• DocumentCode
    2236323
  • Title

    JND Analysis of Texture Roughness Perception using a Magnetic Levitation Haptic Device

  • Author

    Unger, Bertram ; Hollis, Ralph ; Klatzky, Roberta

  • Author_Institution
    Robotics Inst., Carnegie Mellon Univ., Pittsburgh, PA
  • fYear
    2007
  • fDate
    22-24 March 2007
  • Firstpage
    9
  • Lastpage
    14
  • Abstract
    This paper describes the use of a magnetic levitation haptic device (MLHD) to study the psychophysics of texture roughness. Studies of texture roughness perception performed using real textures can be time consuming and expensive. By using a MLHD to simulate texture we are able to quickly and easily adjust texture parameters. A dithered textured surface composed of conical elements is simulated using a constraint surface algorithm. The constraint surface shape is defined by the geometry of the elements as well as the size and shape of the virtual probe. The spacing of the elements and the size of the probe can be varied continuously and in real time. Just noticeable difference (JND) experiments were conducted over the parameters of probe radius and texture spacing. The JND of roughness was determined with respect to element spacing using unforced weighted up-down adaptive threshold estimation. JND´s were found to vary for texture spacing and probe size. JND´s for constant probe size decreased with increasing texture spacing to a minimum and then increased again. JND´s for constant spacing increased as probe size increased. These results are consistent with a geometric model of probe-texture interaction
  • Keywords
    estimation theory; geometry; haptic interfaces; magnetic levitation; psychology; surface roughness; surface texture; touch (physiological); adaptive threshold estimation; constraint surface algorithm; geometric model; just noticeable difference analysis; magnetic levitation haptic device; probe-texture interaction; psychophysics; texture roughness perception; Geometry; Haptic interfaces; Magnetic analysis; Magnetic levitation; Probes; Psychology; Rough surfaces; Shape; Surface roughness; Surface texture;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    EuroHaptics Conference, 2007 and Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems. World Haptics 2007. Second Joint
  • Conference_Location
    Tsukaba
  • Print_ISBN
    0-7695-2738-8
  • Type

    conf

  • DOI
    10.1109/WHC.2007.79
  • Filename
    4145143