School of Information Science and Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, China.
Department of Systems and Computer Engineering, Carleton University, Ottawa, ON K1S 5B6, Canada.
Sensors (Basel). 2023 May 19;23(10):4909. doi: 10.3390/s23104909.
A novel wearable upper arm tactile display device, which can simultaneously provide three types of tactile stimuli (i.e., squeezing, stretching, and vibration) is presented. The squeezing and stretching stimulation of the skin is generated by two motors simultaneously driving the nylon belt in the opposite and the same direction, respectively. In addition, four evenly spaced vibration motors are fixed around the user's arm by an elastic nylon band. There is also a unique structural design for assembling the control module and actuator, powered by two lithium batteries, making it portable and wearable. Psychophysical experiments are conducted to investigate the effect of interference on the perception of squeezing and stretching stimulation by this device. Results show that (1) different tactile stimuli actually interfere with the user's perception compared to the case where only one stimulus is applied to the user; (2) the squeezing has a considerable impact on the stretch just noticeable difference (JND) values when both stimuli are exerted on the user, and when the squeezing is strong, while the impact of stretch on the squeezing JND values is negligible.
一种新型的可穿戴式上臂触觉显示设备,能够同时提供三种类型的触觉刺激(即挤压、拉伸和振动)。皮肤的挤压和拉伸刺激是通过两个电机同时以相反和相同的方向驱动尼纶带产生的。此外,四个均匀间隔的振动电机通过弹性尼纶带固定在用户手臂周围。还有一个独特的结构设计用于组装控制模块和执行器,由两节锂电池供电,使其便携且可穿戴。通过心理物理实验研究了这种设备对挤压和拉伸刺激感知的干扰影响。结果表明:(1)与仅向用户施加一种刺激的情况相比,不同的触觉刺激实际上会干扰用户的感知;(2)当两种刺激同时施加于用户时,挤压对拉伸的可察觉差异(JND)值有很大影响,而当挤压较强时,拉伸对挤压 JND 值的影响可以忽略不计。