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Mobility AT: The Batcane (UltraCane)

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Abstract

The use of the long cane by visually impaired people as an obstacle detector is long standing. More recently the basic cane design has been equipped with laser or ultrasound transmitters and sensors and an interpretive human interface to improve its effectiveness, the objective being to allow safe travel by a visually impaired person. This chapter reports an important case study of the steps involved indeveloping an advanced technology obstacle avoidance cane that used bat echolocation signal processing techniques and ultrasonic technology. The final cane design is now marketed worldwide as the UltraCane™.

The chapter reviews the basic technological principles for ultrasonic waves and the advanced signal processing methods used. There is an extended discussion of all the design and construction issues followed by a description of the final engineering and prototype test phase. The chapter closes with an examination of the issues involved in bringing the prototype to eventual commercialisation.

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References

References

  • Fenton, M.B., 1995, Natural history and biosonar signals, In: Hearing by Bats (ed. A.N. Popper and R.R. Fay), pp37–86, Springer-Verlag, New York

    Google Scholar 

  • Griffin, D., 1958, Listening in the Dark, Yale University Press

    Google Scholar 

  • Grunwalf, J., Schörnich, S., and Wiegrebe, L., 2004, Classification of natural textures in echolocation, Proceedings of the National Academy of Sciences, Vol. 101, pp. 5670–5674

    Article  Google Scholar 

  • Møhl, B., 1988, Target detection by echolocating bats, In: Animal Sonar: Processes and Performance, (ed. P.E. Nachitgall and P.W.B. Moore), pp. 435–450, Plenum Press, New York

    Google Scholar 

  • Morse, P.M., 1948, Vibration and Sound (2nd Ed.), McGraw-Hill, New York

    Google Scholar 

  • Rossing, T.D., and Fletcher, N.H., 2004, Principles of vibration and sound (2nd Ed.), Springer-Verlag, New York

    Google Scholar 

  • Saillant, P.A., Simmons, J.A., and Dear, S., 1993, A computational model of echo processing and acoustic imaging in frequency-modulated echolocating bats: The spectrogram correlation and transformation receiver, J. Acoustical Society of America, Vol. 94, pp. 2691–2712

    Article  Google Scholar 

  • Schnitzler, H.U., 1973, Control of Doppler shift compensation in the Greater Horseshoe Bat, Rhinolophus ferrumequinum, J. Comparative Physiology, Vol. 82, pp. 79–92

    Article  Google Scholar 

  • Schniztler, H.U., and Kalko, E.K.V., 2001, Echolocation by insect-eating bats, Bioscience, Vol. 51, No. 7, pp. 557–569

    Article  Google Scholar 

  • Schnitzler, H.U., Moss, C.F., and Denzinger, A., 2003, From spatial orientation to food acquisition in echolocating bats, Trends in Ecology and Evolution, Vol. 18, pp. 386–394

    Article  Google Scholar 

  • Stein, B.E., and Meredith, M.A., 1993, The merging of the senses, MIT Press, Cambridge, Mass. USA

    Google Scholar 

  • Waters, D.A., and Jones, G., 1995, Echolocation call structure and intensity in five species of insectivorous bats, J. Experimental Biology, Vol. 198, pp. 475–489

    Google Scholar 

  • Waters, D.A., Rydell, J., and Jones, G., 1995, Echolocation call design and limits on prey size: a case study using the aerial-hawking bat Nyctalus leisleri, Behavioural Ecology and Sociobiology, Vol. 17, pp. 312–328

    Google Scholar 

  • Wells P.N.T., 1969, Physical principles of ultrasonic diagnosis, Academic Press

    Google Scholar 

Resources

  • www.UltraCane.com – more information about the UltraCane and its development

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© 2008 Springer-Verlag London Limited

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Hoyle, B., Waters, D. (2008). Mobility AT: The Batcane (UltraCane). In: Hersh, M., Johnson, M. (eds) Assistive Technology for Visually Impaired and Blind People. Springer, London. https://doi.org/10.1007/978-1-84628-867-8_6

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  • DOI: https://doi.org/10.1007/978-1-84628-867-8_6

  • Publisher Name: Springer, London

  • Print ISBN: 978-1-84628-866-1

  • Online ISBN: 978-1-84628-867-8

  • eBook Packages: EngineeringEngineering (R0)

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