Non-Visual Cues for View Management in Narrow Field of View Augmented Reality Displays

Non-Visual Cues for View Management in Narrow Field of View Augmented Reality Displays
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用于窄视场增强现实显示器中视图管理的非视觉提示

DOI:
10.1109/ismar.2019.000-3
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发表时间:
2019
期刊:
2019 IEEE International Symposium on Mixed and Augmented Reality (ISMAR)
影响因子:
--
通讯作者:
Kruijff
Kruijff
中科院分区:
--
文献类型:
--
作者:
Marquardt;Trepkowski;Eibich;Maiero;Kruijff

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窄视场的头戴式设备是增强现实的常见商品。然而,它们有限的屏幕空间使得视图管理变得困难。特别是在密集的信息空间中,这可能会导致视觉冲突,如重叠标签(遮挡)和视觉混乱。在本文中,我们探讨了使用音频和振动触觉反馈来指导搜索和信息定位的潜力。实验结果表明,利用听觉触觉反馈可以高精度地引导用户,在经度、纬度和深度上的最大中值偏差分别为2°、3.6°和0.07 m。关于纬度的编码,我们发现在使用音频时性能优越,提高了61%,搜索时间最快。在解释定位线索时,最大中位数偏差为经度9.9°和要编码的选定距离的18%,当使用音频时可以减少到14%。
Head-worn devices with a narrow field of view are common commodity for Augmented Reality. However, their limited screen space makes view management difficult. Especially in dense information spaces this potentially leads to visual conflicts such as overlapping labels (occlusion) and visual clutter. In this paper, we look into the potential of using audio and vibrotactile feedback to guide search and information localization. Our results indicate users can be guided with high accuracy using audio-tactile feedback with maximum median deviations of only 2° on longitude, 3.6° on latitude and 0.07 meter in depth. Regarding the encoding of latitude we found a superior performance when using audio, resulting in an improvement of 61% and fastest search times. When interpreting localization cues the maximum median deviation was 9.9° on longitude and 18% of a selected distance to be encoded which could be reduced to 14% when using audio.
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