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Development of Tactile Display and an Efficient Approach to Enhance Perceptual Analysis in Rehabilitation

机译:触觉显示的发展和一种增强康复感官分析的有效方法

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Tactile displays are widely used in the rehabilitation and education of blind persons, as it is one of the media of communication amongst them. Tactile display performance is measured in terms of accuracy in presenting pattern, accuracy in identification, recognition and reading time of presented pattern. However, it has had meager attention from researchers. This paper presents a novel 3 x 2 solenoid actuators pin array tactile display and evaluates its effectiveness in presenting alphabets to blind and normal subjects as well as compute facilitation and discrimination value. The proposed actuator requires 75 % of the current and 90 % of the power in comparison with presently available actuators. This is achieved due to the incorporation of conical spring. Two psychological experiments were conducted to evaluate system performance, also to measure perception (reading) and key pressing sense (writing) accuracy for the first time. The low-cost developed system achieved an average reading time of about 15.7 s, recognition time of 39 s and prediction accuracy to be 93 % using a confusion matrix. The developed prototype model has resulted in 94% facilitation value and 11 % discrimination index during psychological experiments for intended users.
机译:触觉显示器被广泛用于盲人的康复和教育,因为它是盲人之间交流的媒介之一。触觉显示性能是根据呈现图案的精度,识别呈现图案的精度,识别和读取时间来衡量的。但是,它受到了研究人员的关注。本文介绍了一种新颖的3 x 2螺线管执行器针阵列触觉显示器,并评估了其在向盲人和正常人显示字母以及计算便利性和辨别力值方面的有效性。与目前可用的致动器相比,提出的致动器需要75%的电流和90%的功率。这是由于结合了锥形弹簧而实现的。进行了两次心理实验,以评估系统性能,并首次测量感知(阅读)和按键感(书写)的准确性。该低成本开发的系统使用混淆矩阵,平均读取时间约为15.7 s,识别时间为39 s,预测精度为93%。所开发的原型模型在心理实验期间为目标用户带来了94%的促进价值和11%的歧视指数。

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