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Wearable Assistive Tactile Communication Interface Based on Integrated Touch Sensors and Actuators

机译:基于集成触摸传感器和执行器的可穿戴辅助触控通信接口

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This paper presents the design and fabrication of a wearable tactile communication interface with vibrotactile feedback for assistive communication. The interface is based on finger Braille, which is a simple and efficient tactile communication method used by deafblind people. It consists of a flexible piezoresistive sensor and a vibrotactile actuator integrated together and positioned at the index, middle and ring fingers of both hands to represent the six dots of Braille. The sensors were made using flexible piezoresistive material whereas the actuator utilizes electromagnetic principle by means of a flexible coil and a tiny NdFeB permanent magnet. Both were integrated to realize a Bluetooth-enabled tactile communication glove which enables deafblind people to communicate using Braille codes. The evaluation with 20 end-users (10 deafblind and 10 sighted and hearing person) of the tactile interface under standardized conditions demonstrated that users can feel and distinguish the vibration at frequencies ranging from 10Hz to 200Hz which is within the perceivable frequency range for the FA-II receptors. The results show that it took non-experts in Braille within 25s and 55s to send and receive words like "BEST" and "JOURNAL", with an accuracy of similar to 75% and 68% respectively.
机译:本文介绍了具有振动触觉反馈的可穿戴触觉通信界面的设计和制造,以进行辅助通信。该界面基于手指盲文,这是一种简单而有效的触觉通信方法,由悲伤的人使用。它由柔性压阻传感器和振动触控致动器集成在一起,并定位在双手的指数,中间和环手指上,以代表六点盲文。使用柔性压阻材料制成传感器,而致动器通过柔性线圈和微小的NdFeB永磁体采用电磁原理。两者都集成了实现了一种支持蓝牙的触觉通信手套,这使得聋盲人能够使用盲文代码进行通信。在标准化条件下,触觉界面的20个最终用户(10张聋耳和10个视线和听力人员)的评估表明,用户可以感觉和区分频率的频率,从10Hz到200Hz,这在FA的可感知频率范围内。 -ii受体。结果表明,在25秒内盲文的非专家们在25秒内,以“最佳”和“最佳”和“期刊”等单词,精度分别为75%和68%。

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