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Electrovibration: Influence of the applied force on tactile perception thresholds

机译:电振动:施加的力对触觉感知阈值的影响

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We present a study on the influence of the applied force on tactile perception thresholds, during exploration of tactile textures generated with electrovibration. Combined with screen-integrated force detection this could lead to more realistic texture feedback on touch screens while exploring a virtual surface. From a first user study, three force levels corresponding to the light (0.2 N-1.5 N), medium (1.5 N-3.0 N), and high force (3.0 N-7.0 N) categories were deduced. In a second study, the users were asked to apply these force levels while following a line on the screen. We determined the perception thresholds of 10 participants for specific electrovibration stimuli (100 Hz, 160 Hz, 240 Hz, 360 Hz, and 540 Hz sine signals) using a staircase method. No force effect on the perception threshold has been measured for 100 Hz and 160 Hz, while it decreased with increasing applied force at 240 Hz, 360 Hz, and 540 Hz.
机译:我们在探索由电振动产生的触觉纹理期间,对施加的力对触觉感知阈值的影响进行了研究。结合屏幕集成的力检测,可以在探索虚拟表面时在触摸屏上产生更逼真的纹理反馈。通过首次用户研究,推导了对应于轻度(0.2 N-1.5 N),中度(1.5 N-3.0 N)和高力(3.0 N-7.0 N)类别的三个力级别。在第二项研究中,要求用户在屏幕上跟随一条线的同时施加这些力水平。我们使用阶梯法确定了10个参与者对特定电振动刺激(100 Hz,160 Hz,240 Hz,360 Hz和540 Hz正弦信号)的感知阈值。在100 Hz和160 Hz时,没有测量到对感知阈值的作用力,而在240 Hz,360 Hz和540 Hz时,随着施加力的增加而减小。

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