3.8 Proceedings Paper

GuideBand: Intuitive 3D Multilevel Force Guidance on a Wristband in Virtual Reality

Publisher

ASSOC COMPUTING MACHINERY
DOI: 10.1145/3411764.3445262

Keywords

Haptic feedback; force feedback; motion guidance; force guidance; virtual reality; wearable device

Funding

  1. Ministry of Science and Technology of Taiwan [MOST109-2221-E-004-013, 109-2218E-011-011, 109-2218-E-002-026, 109-2634-F-002-032, 106-2923-E002-013-MY3]
  2. National Taiwan University
  3. National Chengchi University

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Although vibrotactile feedback is a commonly-used mechanism for haptic guidance, it may not be intuitive and could increase users' mental effort in 3D guidance. To provide a more intuitive 3D multilevel force guidance, researchers propose a wearable device called GuideBand, which outperforms state-of-the-art vibrotactile guidance in terms of intuitiveness, mental effort required, and guidance performance according to studies. Additionally, a VR experience study shows that GuideBand enhances realism in VR guidance by observing how users combine and complement visual and force guidance.
For haptic guidance, vibrotactile feedback is a commonly-used mechanism, but requires users to interpret its complicated patterns especially in 3D guidance, which is not intuitive and increases their mental effort. Furthermore, for haptic guidance in virtual reality (VR), not only guidance performance but also realism should be considered. Since vibrotactile feedback interferes with and reduces VR realism, it may not be proper for VR haptic guidance. Therefore, we propose a wearable device, GuideBand, to provide intuitive 3D multilevel force guidance upon the forearm, which reproduces an effect that the forearm is pulled and guided by a virtual guider or telepresent person in VR. GuideBand uses three motors to pull a wristband at different force levels in 3D space. Such feedback usually requires much larger and heavier robotic arms or exoskeletons. We conducted a just-noticeable difference study to understand users' force level distinguishability. Based on the results, we performed a study to verify that compared with state-of-the-art vibrotactile guidance, GuideBand is more intuitive, needs a lower level of mental effort, and achieves similar guidance performance. We further conducted a VR experience study to observe how users combine and complement visual and force guidance, and prove that GuideBand enhances realism in VR guidance.

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