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Data-driven vibrotactile rendering of digital buttons on touchscreens

机译:数据驱动的触摸屏上数字按钮的振动递送

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摘要

Interaction with physical buttons is an essential part of our daily routine. We use buttons daily to turn lights on, to call an elevator, to ring a doorbell, or even to turn on our mobile devices. Buttons have distinct response characteristics and are easily activated by touch. However, there is limited tactile feedback available for their digital counterparts displayed on touchscreens. Although mobile phones incorporate low-cost vibration motors to enhance touch-based interactions, it is not possible to generate complex tactile effects on touchscreens. It is also difficult to relate the limited vibrotactile feedback generated by these motors to different types of physical buttons. In this study, we focus on creating vibrotactile feedback on a touchscreen that simulates the feeling of physical buttons using piezo actuators attached to it. We first recorded and analyzed the force, acceleration, and voltage data from twelve participants interacting with three different physical buttons: latch, toggle, and push buttons. Then, a button-specific vibrotactile stimulus was generated for each button based on the recorded data. Finally, we conducted a three-alternative forced choice (3AFC) experiment with twenty participants to explore whether the resultant stimulus is distinct and realistic. In our experiment, participants were able to match the three digital buttons with their physical counterparts with a success rate of 83%. In addition, we harvested seven adjective pairs from the participants expressing their perceptual feeling of pressing the physical buttons. All twenty participants rated the degree of their subjective feelings associated with each adjective for all the physical and digital buttons investigated in this study. Our statistical analysis showed that there exist at least three adjective pairs for which participants have rated two out of three digital buttons similar to their physical counterparts.
机译:与物理按钮的互动是我们日常生活的重要组成部分。我们每天使用按钮打开灯,打电话给电梯,响铃门铃,甚至打开我们的移动设备。按钮具有明显的响应特性,并且通过触摸很容易激活。但是,可用于触摸屏上显示的数字对应物有限的触觉反馈。尽管手机采用低成本振动电机来提高基于触摸的相互作用,但不可能对触摸屏产生复杂的触觉效果。还难以将这些电机产生的有限振动反馈与不同类型的物理按钮相关联。在本研究中,我们专注于在触摸屏上创建振动反馈,这些反馈模拟使用附加的压电执行器模拟物理按钮的感觉。我们首先录制和分析了来自12名参与者的力量,加速度和电压数据与三个不同的物理按钮交互:锁存,切换和按钮。然后,基于记录的数据为每个按钮生成按钮特异性振动刺激。最后,我们进行了三个替代的强迫选择(3AFC)实验,有二十名参与者探索所得刺激是否明显和现实。在我们的实验中,参与者能够将三个数字按钮与其物理对应物匹配,其成功率为83%。此外,我们从参与者中收获了七个形容词对,表达了他们对按下物理按钮的感知感觉。所有二十名参与者评定了与本研究中调查的所有物理和数字按钮相关的与每个形容词相关的主观感受的程度。我们的统计分析表明,至少有三个形容词对,其中参与者将两个与其物理对应物相似的三个数字按钮中的两个。

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