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Effects of Touch Force Profiles and Waveforms of Electrostatic Tactile Feedback on Touchscreen Pan Operation

机译:触摸力分布和静电触觉反馈波形对触摸屏平移操作的影响

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摘要

Electrostatic tactile feedback has an important role in improving touchscreen operations and user experience. In this paper, panning performance under different forces and different waveforms were explored using subjective and objective experiments. The effects of electrostatic tactile feedback under one linear force and three non-linear force profiles with the fixed waveform were studied. The results indicated that panning accuracy, efficiency and user experience under exponential force was superior to those under linear, quadratic or logarithmic forces. Second, the effects of four different waveforms under exponential force were studied. Results indicated that panning performance was better with square wave, compared to those with sinusoidal, triangular or saw-tooth waves. The relationship between panning time and index of panning difficulties was also explored and found to be in agreement with the Steering law and Meyer's law, with correlations of 0.9395 and 0.9397, respectively. The results suggest ways for designing touchscreens with tactile feedback that is useful in both research and end-user communities.
机译:静电触觉反馈在改善触摸屏操作和用户体验方面具有重要作用。本文通过主观和客观实验探讨了在不同力和不同波形下的声像性能。研究了在一个线性力和三个非线性力分布固定波形下静电触觉反馈的影响。结果表明,指数力下的平移精度,效率和用户体验均优于线性,二次或对数力下。其次,研究了四种不同波形在指数力作用下的影响。结果表明,与正弦波,三角波或锯齿波相比,方波的平移性能更好。还探讨了淘选时间与淘选难度指数之间的关系,发现它们与转向定律和迈尔定律相一致,分别为0.9395和0.9397。结果提出了设计带有触觉反馈的触摸屏的方法,这些方法对研究和最终用户社区均有用。

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