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Tactile Display for Mobile Interaction.

机译:用于移动互动的触觉显示。

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摘要

Interaction with mobile devices suffers from a number of shortcomings, most of which are linked to the small size of screens. Artificial tactile feedback promises to be particularly well suited to the mobile interaction context. To be practical, tactile transducers for mobile devices must be small and light, and yet be capable of displaying a rich set of expressive stimuli. This thesis introduces a tactile transducer for mobile interaction that is capable of distributed skin stimulation on the fingertip. The transducer works on a principle that was first investigated because of its potential application to the display of Braille. A preliminary study was conducted on an earlier version of the transducer. It concluded that subjects were able to identify simple Braille characters with a high rate of success. Then, a complete re-design of the transducer addressed the goal of integration in a handheld prototype for mobile interaction. The resulting device comprises a liquid crystal graphic display co-located with the miniature, low-power, distributed tactile transducer. Next, it was needed to measure the perceptual differences between the stimuli that the device could display. Our experiences with one evaluation approach raised questions relating to the methodology for data collection. Therefore, an analysis of the process was carried out using a stimulus set obtained with the device. By means of multidimensional scaling analysis, both the perceptual parameters forming the stimuli space and the evaluation technique were validated. Finally, two experiments were carried out with the objective to develop new mobile interactions paradigms that combined visual and tactile feedback. Both experiments modeled a list scrolling task on the device. The first experiment found a marginal improvement in performance when tactile feedback was employed. It also came at a higher attentional cost dedicated to operating the device. For the second experiment, the scrolling paradigm and the tactile feedback were improved. This lead to a decrease in the reliance on vision when tactile feedback was enabled. Results showed a 28% decrease in the number of key presses that controlled the visibility state of the scroll list.
机译:与移动设备的交互遭受许多缺点的困扰,其中大多数与屏幕尺寸较小有关。人工触觉反馈有望特别适合移动交互环境。为了实用,用于移动设备的触觉换能器必须小巧轻便,并且能够显示丰富的表达刺激。本文介绍了一种用于移动交互的触觉换能器,其能够在指尖上分布皮肤刺激。该换能器的工作原理因其在盲文显示器中的潜在应用而被首先研究。对换能器的早期版本进行了初步研究。结论是,受试者能够识别出简单的盲文字符,并且具有很高的成功率。然后,换能器的完整重新设计解决了集成到用于移动交互的手持式原型中的目标。所得的设备包括与微型,低功率,分布式触觉换能器并置的液晶图形显示器。接下来,需要测量设备可以显示的刺激之间的感知差异。我们在一种评估方法上的经验提出了与数据收集方法有关的问题。因此,使用通过该设备获得的刺激装置对过程进行了分析。通过多维尺度分析,验证了形成刺激空间的感知参数和评估技术。最后,进行了两个实验,目的是开发结合视觉和触觉反馈的新型移动交互范例。这两个实验都在设备上模拟了列表滚动任务。第一个实验发现,当采用触觉反馈时,其性能略有提高。还要花费更高的注意力投入于操作该设备。对于第二个实验,改进了滚动范例和触觉反馈。当启用触觉反馈时,这导致对视觉的依赖性降低。结果显示,控制滚动列表可见性状态的按键数量减少了28%。

著录项

  • 作者

    Pasquero, Jerome.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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