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Listen to it yourself!: evaluating usability of what's around me? for the blind

Published:27 April 2013Publication History

ABSTRACT

Although multiple GPS-based navigation applications exist for the visually impaired, these are typically poorly suited for in-situ exploration, require cumbersome hardware, lack support for widely accessible geographic databases, or do not take advantage of advanced functionality such as spatialized audio rendering. These shortcomings led to our development of a novel spatial awareness application that leverages the capabilities of a smartphone coupled with worldwide geographic databases and spatialized audio rendering to convey surrounding points of interest. This paper describes the usability evaluation of our system through a task-based study and a longer-term deployment, each conducted with six blind users in real settings. The findings highlight the importance of testing in ecologically valid contexts over sufficient periods to face real-world challenges, including balancing quality versus quantity for audio information, overcoming limitations imposed by sensor accuracy and quality of database information, and paying appropriate design attention to physical interaction with the device.

References

  1. Ahmetovic, D., Bernareggi, C., and Mascetti, S. Zebralocalizer: identification and localization of pedestrian crossings. In Proc. MobileHCI, ACM Press (2011), 275--284. Google ScholarGoogle ScholarDigital LibraryDigital Library
  2. Bigham, J. P., Jayant, C., Ji, H., Little, G., Miller, A., Miller, R. C., Miller, R., Tatarowicz, A., White, B., White, S., and Yeh, T. Vizwiz: nearly real-time answers to visual questions. In Proc. UIST, ACM Press (2010), 333--342. Google ScholarGoogle ScholarDigital LibraryDigital Library
  3. Blum, J. R., Bouchard, M., and Cooperstock, J. R. Spatialized audio environmental awareness for blind users with a smartphone. Mobile Networks and Applications (2012).Google ScholarGoogle Scholar
  4. Blum, J. R., Greencorn, D., and Cooperstock, J. R. Smartphone sensor reliability for augmented reality applications. In Proc. MobiQuitous (2012).Google ScholarGoogle Scholar
  5. El-Shimy, D., Grond, F., Olmos, A., and Cooperstock, J. R. Eyes-free environmental awareness for navigation. Springer Journal on Multimodal User Interfaces 5, 3-4 (2012), 131--141.Google ScholarGoogle Scholar
  6. Kane, S. K., Jayant, C., Wobbrock, J. O., , and Ladner, R. E. Freedom to Roam: Mobile Device Opportunities and Challenges for People with Visual and Motor Impairments. In Proc. ASSETS, ACM Press (2009), 115--122. Google ScholarGoogle ScholarDigital LibraryDigital Library
  7. Katz, M. A., and Rohrer, C. How Many Users Are Really Enough And More Importantly When? Available online at: http://www.xdstrategy.com/wp-content/uploads/2008/10/katz_and_rohrer_2004-chi.pdf {Accessed: 03-01-2010}, 2004.Google ScholarGoogle Scholar
  8. Laakso, M., Sarjakoski, T., Sarjakoski, L., Lehto, L., Harrie, L., Andreasson, J., Vilén, A., Claassen, G., Peters, J., and Stoer, A. Haptimap - accessible map and lbs content guidelines. Tech. Rep. Deliverable D4.4, Haptimap consortium, 2012.Google ScholarGoogle Scholar
  9. Loomis, J. M., Marston, J. R., Golledge, R. G., and Klatzky, R. L. Personal Guidance System for People with Visual Impairment: A Comparison of Spatial Displays for Route Guidance. Journal of Visual Impairment and Blindness 99, 4 (2005), 219--232.Google ScholarGoogle ScholarCross RefCross Ref
  10. Magnusson, C., Larsson, A., Warell, A., and Eftring, H. Key scenarios, contextual walkthrough and context trails - tools for better and more accessible mobile designs. In Workshop on Mobile Accessibility (2011).Google ScholarGoogle Scholar
  11. Magnusson, C., Rassmus-Gröhn, K., Tollmar, K., and Deaner, E. Haptimap - User Study Guidelines. Tech. rep., Haptimap Consortium, 2009.Google ScholarGoogle Scholar
  12. Magnusson, C., Rassmus-Gröhn, K., Tollmar, K., and Stigmar, H. Exploring User Requirements for Non-visual Mobile Navigation Systems. In Proc. INTERACT, LNCS 5726, Springer (2009), 754--757. Google ScholarGoogle ScholarDigital LibraryDigital Library
  13. Ran, L., Helal, S., and Moore, S. Drishti: an integrated indoor/outdoor blind navigation system and service. In Proc. PerCom, IEEE Press (2004), 23--30. Google ScholarGoogle ScholarDigital LibraryDigital Library
  14. Ross, D. A., and Blasch, B. B. Wearable Interfaces for Orientation and Wayfinding. In Proc. ASSETS, ACM Press (2000), 193--200. Google ScholarGoogle ScholarDigital LibraryDigital Library
  15. Rubin, J. Handbook of Usability Testing: How to Plan, Design, and Conduct Effective Tests. Wiley Technical Communications Library. John Wiley and Sons, Inc., April 1994. Google ScholarGoogle ScholarDigital LibraryDigital Library
  16. Vazquez-Alvarez, Y., Oakley, I., and Brewster, S. A. Auditory display design for exploration in mobile audio-augmented reality. Personal and Ubiquitous Computing (2011), 1--27. Google ScholarGoogle ScholarDigital LibraryDigital Library
  17. Walker, B. N., and Lindsay, J. Navigation Performance With a Virtual Auditory Display: Effects of Beacon Sound, Capture Radius, and Practice. Human Factors 48, 2 (2006), 265--278.Google ScholarGoogle ScholarCross RefCross Ref
  18. Wilson, J., Walker, B. N., Lindsay, J., Cambias, C., and Dellaert, F. SWAN: System for Wearable Audio Navigation. In Proc. ISWC (2007), 91--98. Google ScholarGoogle ScholarDigital LibraryDigital Library
  19. Yang, R., Park, S., Mishra, S. R., Hong, Z., Newsom, C., Joo, H., Hofer, E., and Newman, M. W. Supporting Spatial Awareness and Independent Wayfinding for Pedestrians with Visual Impairments. In Proc. ASSETS, ACM Press (2011), 27--34. Google ScholarGoogle ScholarDigital LibraryDigital Library

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    • Published in

      cover image ACM Conferences
      CHI '13: Proceedings of the SIGCHI Conference on Human Factors in Computing Systems
      April 2013
      3550 pages
      ISBN:9781450318990
      DOI:10.1145/2470654

      Copyright © 2013 ACM

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      Publication History

      • Published: 27 April 2013

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      CHI '13 Paper Acceptance Rate392of1,963submissions,20%Overall Acceptance Rate6,199of26,314submissions,24%

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