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全身振动对电振动感知的影响因目标刺激持续时间而异。

Impact of Whole-Body Vibrations on Electrovibration Perception Varies with Target Stimulus Duration.

作者信息

Vuik Jan D A, Pool Daan M, Kenanoglu Celal Umut, Vardar Yasemin

机构信息

Delft University of Technology, The Netherlands.

出版信息

Hum Factors. 2025 Oct;67(10):1046-1061. doi: 10.1177/00187208251326662. Epub 2025 Apr 17.

Abstract

ObjectiveThis study investigates the impact of whole-body vibrations caused by external vehicle perturbations, such as aircraft turbulence, on the perception of electrovibration displayed on touchscreens.BackgroundElectrovibration is a promising technology for providing tactile feedback on future touchscreens, potentially addressing usability challenges in vehicle cockpits. However, its performance under dynamic conditions, such as whole-body vibrations caused by turbulence, remains largely unexplored.MethodWe measured the absolute detection thresholds of 24 human participants for short (0.2 s) and long (0.5 s) duration electrovibration stimuli displayed on a touchscreen. These measurements were taken in the absence and presence of two types of turbulence motion (Gaussian and Multisine) generated by a motion simulator. Concurrently, we recorded participants' applied contact force and finger displacements.ResultsElectrovibration stimuli displayed on vehicle cockpit touchscreens were more reliably perceived with a 0.5-s duration than a 0.2-s duration, both in the presence and absence of turbulence. Both turbulence types led to increased vibration-induced finger displacements and scan speeds in the direction of turbulence, as well as higher applied forces and force fluctuation rates. Gaussian turbulence significantly elevated perception thresholds, but only for short-duration electrovibration stimuli.ConclusionThe findings indicate that whole-body vibrations impair the perception of short-duration electrovibration stimuli, primarily due to unintentional finger movements and increased fluctuations in applied normal force.ApplicationOur findings offer valuable insights for the future design of touchscreens with tactile feedback in vehicle cockpits.

摘要

目的

本研究调查外部车辆扰动(如飞机湍流)引起的全身振动对触摸屏上显示的电振动感知的影响。

背景

电振动是一种很有前景的技术,可用于在未来的触摸屏上提供触觉反馈,有望解决车辆驾驶舱中的可用性挑战。然而,其在动态条件下的性能,如湍流引起的全身振动,在很大程度上仍未得到探索。

方法

我们测量了24名人类参与者对触摸屏上显示的短(0.2秒)和长(0.5秒)持续时间电振动刺激的绝对检测阈值。这些测量是在运动模拟器产生的两种湍流运动(高斯和多正弦)不存在和存在的情况下进行的。同时,我们记录了参与者施加的接触力和手指位移。

结果

无论有无湍流,在车辆驾驶舱触摸屏上显示的电振动刺激,0.5秒持续时间比0.2秒持续时间更能可靠地被感知。两种湍流类型都导致振动引起的手指位移增加和在湍流方向上的扫描速度加快,以及更高的施加力和力波动率。高斯湍流显著提高了感知阈值,但仅针对短持续时间的电振动刺激。

结论

研究结果表明,全身振动会损害对短持续时间电振动刺激的感知,主要原因是无意的手指运动和施加的法向力波动增加。

应用

我们的研究结果为未来车辆驾驶舱中具有触觉反馈的触摸屏设计提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1fa/12420938/cc6b494b103c/10.1177_00187208251326662-fig1.jpg

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