• DocumentCode
    827006
  • Title

    Binaural sonar electronic travel aid provides vibrotactile cues for landmark, reflector motion and surface texture classification

  • Author

    Kuc, Roman

  • Author_Institution
    Dept. of Electr. Eng., Yale Univ., New Haven, CT, USA
  • Volume
    49
  • Issue
    10
  • fYear
    2002
  • Firstpage
    1173
  • Lastpage
    1180
  • Abstract
    Electronic travel aids (ETAs) for the blind commonly employ conventional time-of-flight sonars to provide range measurements, but their wide beams prevent accurate determination of object bearing. We describe a binaural sonar that detects objects over a wider bearing interval compared with a single transducer and also determines if the object lies to the left or right of the sonar axis in a robust manner. The sonar employs a pair of Polaroid 6500 ranging modules connected to Polaroid 7000 transducers operating simultaneously in a binaural array configuration. The sonar determines which transducer detects the echo first. An outward vergence angle between the transducers improves the first-echo detection reliability by increasing the delay between the two detected echoes, a consequence of threshold detection. We exploit this left/right detection capability in an ETA that provides vibrotactile feedback. Pager motors mount on both sides of the sonar, possibly worn on the user´s wrists. The motor on the same side as the reflecting object vibrates with speed inversely related to range. As the sonar or object moves, vibration patterns provide landmark, motion and texture cues. Orienting the sonar at 451 relative to the travel direction and passing a right-angle corner produces a characteristic vibrational pattern. When pointing the sonar at a moving object, such as a fluttering flag, the motors alternate in a manner to give the user a perception of the object motion. When the sonar translates or rotates to scan a foliage surface, the vibrational patterns are related to the surface scatterer distribution, allowing the user to identify the foliage.
  • Keywords
    biomedical electronics; handicapped aids; hearing; sensory aids; sonar; surface texture; touch (physiological); Polaroid 6500 ranging modules; Polaroid 7000 transducers; binaural sonar electronic travel aid; blind; first-echo detection reliability improvement; fluttering flag; foliage surface; landmark; object bearing detection; reflector motion; surface scatterer distribution; surface texture classification; vibrotactile cues; vibrotactile feedback; wrist; Delay; Feedback; Object detection; Robustness; Sonar detection; Sonar measurements; Surface texture; Time of arrival estimation; Transducers; Wrist; Animals; Blindness; Distance Perception; Echolocation; Equipment Design; Humans; Models, Theoretical; Motion; Pattern Recognition, Automated; Self-Help Devices; Sensory Aids; Signal Processing, Computer-Assisted; Space Perception; Surface Properties; Transducers; Travel; Ultrasonics; Vibration;
  • fLanguage
    English
  • Journal_Title
    Biomedical Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9294
  • Type

    jour

  • DOI
    10.1109/TBME.2002.803561
  • Filename
    1035967