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2014 | OriginalPaper | Buchkapitel

Scale Dependence of Force Patterns During the Scanning of a Surface by a Bare Finger

verfasst von : Marco Janko, Richard Primerano, Yon Visell

Erschienen in: Haptics: Neuroscience, Devices, Modeling, and Applications

Verlag: Springer Berlin Heidelberg

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Abstract

This study investigated how the geometry of a touched surface influences forces felt during the scanning of an object with the finger. Although prior research, and basic mechanical considerations, have shed light on force production during haptic interaction with a touched object, surprisingly little is known about how to relate surface detail at different scales to the specific patterns of force that are observed. To address this, we designed an apparatus that could accurately measure normal and tangential forces between a finger and a surface. We fabricated sinusoidal surfaces with precisely controlled geometry, and measured spatial variations in resultant forces generated while subjects repeatedly scanned the surfaces at specified speed and pressure. Subsequent analysis revealed that the resulting force patterns varied in an organized way with spatial scale, and that fluctuations, in the form of aperiodic signal components that proved difficult to model, played an increasingly important role as the spatial scale of the surface geometry decreased. The results may help to explain differences in how surface detail is recovered by the haptic perceptual system at different length scales.

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Literatur
1.
Zurück zum Zitat Wiertlewski, M., Hudin, C., Hayward, V.: On the 1/f noise and non-integer harmonic decay of the interaction of a finger sliding on flat and sinusoidal surfaces. In: 2011 IEEE World Haptics Conference (WHC), IEEE, pp. 25–30 (2011) Wiertlewski, M., Hudin, C., Hayward, V.: On the 1/f noise and non-integer harmonic decay of the interaction of a finger sliding on flat and sinusoidal surfaces. In: 2011 IEEE World Haptics Conference (WHC), IEEE, pp. 25–30 (2011)
2.
Zurück zum Zitat Fujii, Y., Okamoto, S., Yamada, Y.: Interactive forces caused by scanning wavy surfaces. In: Proceedings of the IEEE Haptics Symposium (2014) Fujii, Y., Okamoto, S., Yamada, Y.: Interactive forces caused by scanning wavy surfaces. In: Proceedings of the IEEE Haptics Symposium (2014)
3.
Zurück zum Zitat Fagiani, R., Massi, F., Chatelet, E., Berthier, Y., Akay, A.: Tactile perception by friction induced vibrations. Tribol. Int. 44(10), 1100–1110 (2011)CrossRef Fagiani, R., Massi, F., Chatelet, E., Berthier, Y., Akay, A.: Tactile perception by friction induced vibrations. Tribol. Int. 44(10), 1100–1110 (2011)CrossRef
4.
Zurück zum Zitat Romano, J.M., Kuchenbecker, K.J.: Creating realistic virtual textures from contact acceleration data. IEEE Trans. Haptics 5(2), 109–119 (2012)CrossRef Romano, J.M., Kuchenbecker, K.J.: Creating realistic virtual textures from contact acceleration data. IEEE Trans. Haptics 5(2), 109–119 (2012)CrossRef
5.
Zurück zum Zitat Wiertlewski, M., Lozada, J., Pissaloux, E., Hayward, V.: Causality inversion in the reproduction of roughness. In: Kappers, A.M.L., van Erp, J.B.F., Bergmann Tiest, W.M., van der Helm, F.C.T. (eds.) EuroHaptics 2010. LNCS, vol. 6192, pp. 17–24. Springer, Heidelberg (2010)CrossRef Wiertlewski, M., Lozada, J., Pissaloux, E., Hayward, V.: Causality inversion in the reproduction of roughness. In: Kappers, A.M.L., van Erp, J.B.F., Bergmann Tiest, W.M., van der Helm, F.C.T. (eds.) EuroHaptics 2010. LNCS, vol. 6192, pp. 17–24. Springer, Heidelberg (2010)CrossRef
6.
Zurück zum Zitat Otaduy, M.A., Lin, M.C.: A perceptually-inspired force model for haptic texture rendering. In: Proceedings of the 1st Symposium on Applied Perception in Graphics and Visualization, pp. 123–126. ACM, New York (2004) Otaduy, M.A., Lin, M.C.: A perceptually-inspired force model for haptic texture rendering. In: Proceedings of the 1st Symposium on Applied Perception in Graphics and Visualization, pp. 123–126. ACM, New York (2004)
7.
Zurück zum Zitat Rizos, D., Fassois, S.: Friction identification based upon the Lugre and Maxwell slip models. IEEE Trans. Control Syst. Technol. 17(1), 153–160 (2009)CrossRef Rizos, D., Fassois, S.: Friction identification based upon the Lugre and Maxwell slip models. IEEE Trans. Control Syst. Technol. 17(1), 153–160 (2009)CrossRef
8.
Zurück zum Zitat Ljung, L.: System Identification. Springer, New York (1998) Ljung, L.: System Identification. Springer, New York (1998)
Metadaten
Titel
Scale Dependence of Force Patterns During the Scanning of a Surface by a Bare Finger
verfasst von
Marco Janko
Richard Primerano
Yon Visell
Copyright-Jahr
2014
Verlag
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-662-44193-0_38