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双耳声纳电子旅行辅助设备为地标、反射器运动和表面纹理分类提供振动触觉线索。

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

作者信息

Kuc Roman

机构信息

Intelligent Sensors Laboratory, Department of Electrical Engineering, Yale University, New Haven, CT 06520-8284, USA.

出版信息

IEEE Trans Biomed Eng. 2002 Oct;49(10):1173-80. doi: 10.1109/TBME.2002.803561.

DOI:10.1109/TBME.2002.803561
PMID:12374342
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 45 degrees 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.

摘要

盲人电子出行辅助设备(ETA)通常采用传统的飞行时间声纳来进行距离测量,但其宽波束阻碍了对物体方位的精确测定。我们描述了一种双耳声纳,与单个换能器相比,它能在更宽的方位区间内检测物体,并且还能可靠地确定物体是位于声纳轴的左侧还是右侧。该声纳采用一对宝丽来6500测距模块,连接到宝丽来7000换能器,以双耳阵列配置同时运行。声纳确定哪个换能器首先检测到回波。换能器之间的向外发散角通过增加两个检测到的回波之间的延迟来提高首次回波检测的可靠性,这是阈值检测的结果。我们在提供振动触觉反馈的ETA中利用了这种左右检测能力。寻呼机电机安装在声纳两侧,可能佩戴在用户手腕上。与反射物体同侧的电机以与距离成反比的速度振动。随着声纳或物体移动,振动模式提供地标、运动和纹理线索。将声纳相对于行进方向定向45度并经过直角拐角会产生特征性的振动模式。当将声纳指向移动物体(如飘动的旗帜)时,电机会交替工作,让用户感知物体的运动。当声纳平移或旋转以扫描树叶表面时,振动模式与表面散射体分布有关,从而使用户能够识别树叶。

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