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Towards the Design of Effective Haptic and Audio Displays for Augmented Reality and Mixed Reality Applications

机译:面向增强现实和混合现实应用的有效触觉和音频显示设计

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摘要

Augmented Reality (AR) and Mixed Reality (MR) technology has potential for supporting mobile applications. However, nonvisual interaction modalities are undervalued and underused in AR/MR applications. Visual displays can be ineffective or inappropriate in some situations such as walking or driving. Meanwhile, nonvisual modalities are becoming increasingly important in mobile user experiences. In this paper, we report two studies investigating nonvisual interaction modalities such as audio and haptic displays with mobile AR/MR applications. In the first study, we investigate a range of design factors for haptic and audio displays, including rhythm, amplitude, and their combination in representing tourism information to users with a mobile phone. The results show a main effect for Interaction modality, with identification rates highest for information represented in a combined Haptic-Audio display. In the second study, we investigate target location tasks in 3D space using spatial audio feedback and a head-mounted display. We evaluate several design factors including audio feedback device, volume, rhythm, and the targets horizontal and vertical position. Results show that the vertical positions are very difficult to locate, and overall our participants prefer audio cues with loud volume and fast rhythm. Finally, we propose practical audio and haptic display design guidelines for AR/MR applications.
机译:增强现实(AR)和混合现实(MR)技术具有支持移动应用程序的潜力。但是,非视觉交互方式在AR / MR应用程序中被低估和使用不足。在某些情况下,例如步行或驾车,视觉显示可能无效或不合适。同时,非视觉形式在移动用户体验中变得越来越重要。在本文中,我们报告了两项研究非视觉交互方式的研究,例如具有移动AR / MR应用程序的音频和触觉显示器。在第一项研究中,我们研究了触觉和音频显示的一系列设计因素,包括节奏,振幅及其在用手机向用户表示旅游信息时的组合。结果显示了交互模式的主要效果,对于组合式触觉音频显示中所表示的信息,识别率最高。在第二项研究中,我们使用空间音频反馈和头戴式显示器调查3D空间中的目标定位任务。我们评估了几个设计因素,包括音频反馈设备,音量,节奏以及目标水平和垂直位置。结果表明,垂直位置很难定位,总体而言,我们的参与者更喜欢音量大,节奏快的音频提示。最后,我们为AR / MR应用提出了实用的音频和触觉显示设计指南。

著录项

  • 来源
    《Advances in multimedia》 |2018年第2018期|4517150.1-4517150.11|共11页
  • 作者单位

    School of Design Arts, Xiamen University of Technology, China,Department of Computer Science, University of Bath, UK;

    Department of Computer Science, University of Bath, UK;

    Department of Computer Science, University of Bath, UK;

    School of Architecture, Huaqiao University, China;

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