DOI QR코드

DOI QR Code

Effect of Tactile Feedback for Button GUI on Mobile Touch Devices

  • 투고 : 2014.01.28
  • 심사 : 2014.11.06
  • 발행 : 2014.12.01

초록

This paper describes new tactile feedback patterns and the effect of their input performance for a button GUI activated by a tap gesture on mobile touch devices. Based on an analysis of touch interaction and informal user tests, several tactile feedback patterns were designed. Using these patterns, three user experiments were performed to investigate appropriate tactile feedback patterns and their input performance during interaction with a touch button. The results showed that a tactile pattern responding to each touch and release gesture with a rapid response time and short falling time provides the feeling of physically clicking a button. The suggested tactile feedback pattern has a significantly positive effect on the number of typing errors and typing task completion time compared to the performance when no feedback is provided.

키워드

참고문헌

  1. Immersion Corporation, Haptic Develop. Platform for Android, Developer Guide, Effects Available in the UHL, Immersion, 2012. Accessed Oct. 30, 2014. http://www2.immersion.com/developers/
  2. O. Bau et al., "TeslaTouch: Electrovibration for Touch Surfaces," Proc. ACM Symp. User Interface Softw. Technol., New York, NY, USA, Oct. 3-6, 2010, pp. 283-292.
  3. I. Poupyrev, J. Rekimoto, and S. Maruyama, "TouchEngine: A Tactile Display for Handheld Devices," Proc. ACM SIGCHI Conf. Human Factors Comput. Syst., Minneapolis, MN, USA, Apr. 20-25, 2002, pp. 644-645.
  4. J. Seifert, M. Packeiser, and E. Rukzio, "Adding Vibrotactile Feedback to Large Interactive Surfaces," Proc. IFIP TC 13 Conf. Human-Comput. Interaction, Cape Town, South Africa, Sept. 2-6, 2013, pp. 507-514.
  5. M. Fukumoto and T. Sugimura, "Active Click: Tactile Feedback for Touch Panels," Proc. ACM SIGCHI Conf. Human Factors Comput. Syst., Seattle, WA, USA, Mar. 31-Apr. 5, 2001, pp. 121-122.
  6. I. Poupyrev, S. Maruyama, and J. Rekimoto, "Ambient Touch: Designing Tactile Interfaces for Handheld Devices," Proc. ACM Symp. User Interface Softw. Technol., Paris, France, Oct. 27-30, 2002, pp. 51-60.
  7. I. Poupyrev and S. Maruyama, "Tactile Interfaces for Small Touch Screens," Proc. ACM Symp. User Interface Softw. Technol., Vancouver, Canada, Nov. 2-5, 2003, pp. 217-220.
  8. E. Hoggan, S. Brewster, and J. Johnston, "Investigating the Effectiveness of Tactile Feedback for Mobile Touchscreens," Proc. ACM SIGCHI Conf. Human Factors Comput. Syst., Florence, Italy, Apr. 5-10, 2008, pp. 1573-1582.
  9. S. Lee and S. Zhai, "The Performance of Touch Screen Soft Buttons," Proc. ACM SIGCHI Conf. Human Factors Comput. Syst., Boston, MA, USA, Apr. 4-9, 2009, pp. 309-318.
  10. K. Yatani and K.N. Truong, "SemFeel: A User Interface with Semantic Tactile Feedback for Mobile Touch-Screen Devices," Proc. ACM Symp. User Interface Softw. Technol., Victoria, Canada, Oct. 4-7, 2009, pp. 111-120.
  11. T. Pakkanen et al., "Haptic Numbers: Three Haptic Representation Models for Numbers on a Touch Screen Phone," Proc. ACM Int. Conf. Multimodal Interfaces Workshop Mach. Learn. Multimodal Interaction, Beijing, China, Nov. 8-12, 2010.
  12. E. Hoggan and S. Brewster, "New Parameters for Tacton Design," Proc. ACM SIGCHI Conf. Human Factors Comput. Syst., Florence, Italy, Apr. 5-10, 2007, pp. 2417-2422.
  13. S. Brewster and L. Brown, "Tactons: Structured Tactile Messages for Non-visual Information Display," Proc. Conf. Australasian User Interface, Dunedin, New Zealand, vol. 28, Jan. 18-22, 2004, pp. 15-23.
  14. E. Koskinen, T. Kaaresoja, and P. Laitinen, "Feel-Good Touch: Finding the Most Pleasant Tactile Feedback for a Mobile Touch Screen Button," Proc. ACM Int. Conf. Multimodal Interaction, Crete, Greece, Oct. 20-22, 2008, pp. 297-304.
  15. J. Lee et al., "SHIFT: Interactive Smartphone Bumper Case," Proc. EuroHaptics, Tampere, Finland, June 13-15, 2012, pp. 91-96.
  16. J. Lee et al., "Haptic Interaction with User Manipulation for Smartphone," IEEE Int. Conf. Consum. Electron., Las Vegas, NV, USA, Jan. 11-14, 2013, pp. 47-48.
  17. R. Cholewiak and A. Collins, "Sensory and Physiological Bases of Touch," in The Psychology of Touch, Hillsdale, NJ, USA: Lawrence Erlbaum Associates Inc., 1991, pp. 23-60.
  18. D. Saffer, "Designing Gestural Interfaces: Touchscreens and Interactive Devices," Sebastopol, Canada: O'Reilly Media Inc. Press, 2008.
  19. H. Shin et al., "Tactile Feedback for Button GUI on Touch Devices," Proc. ACM SIGCHI Conf. Human Factors Comput. Syst., Austin, TX, USA, May 5-10, 2012, pp. 2633-2636.

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  3. The Finger-Based Interactive Projection using a Monocular Camera vol.33, pp.14, 2014, https://doi.org/10.1142/s021800141954034x
  4. Effect of Target Size, Location, and Input Method on Interaction in Immersive Virtual Reality vol.11, pp.21, 2014, https://doi.org/10.3390/app11219846