比较和对比近场、物体空间和新型混合交互技术在虚拟现实中对远距离物体的操作

Wei-An Hsieh, Hsin-Yi Chien, David Brickler, Sabarish V. Babu, Jung-Hong Chuang
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引用次数: 0

摘要

在这篇论文中,我们提出了一种混合交互技术,它整合了近场和物体空间交互技术,用于在虚拟现实(VR)中远距离操控物体。混合交互技术的目标是无缝利用近场和物体空间操作技术的优势。我们采用双臂近场隐喻与缩放复制(BMSR)作为我们的近场交互技术,这使我们能够执行多级自由度(DoF)分离变换,如1~3DoF平移、1~3DoF均匀和锚定缩放、1DoF和3DoF旋转以及6DoF同步平移和旋转,并通过近场操纵技术提供增强的深度知觉和精细运动控制。我们采用的物体空间交互技术是经典的缩放 HOMER,众所周知,该技术对于远距离物体操作中的粗略变换非常有效和合适。在主体内重复测量评估中,我们对三种交互技术的准确性、效率和经济性进行了实证评估,包括在 VR 中的拾放、对接和隧道任务中的移动。我们的研究结果表明,近场 BMSR 技术在准确性和运动经济性方面优于物体空间缩放 HOMER 技术,但总体而言,参与者在使用 BMSR 技术时的表现更为缓慢。此外,我们的研究结果表明,参与者更喜欢使用混合交互技术,因为这种技术允许他们根据所需的准确度、精确度和效率水平,在 BMSR 和 Scaled HOMER 交互技术之间无缝切换和转换。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparing and Contrasting Near-Field, Object Space, and a Novel Hybrid Interaction Technique for Distant Object Manipulation in VR
In this contribution, we propose a hybrid interaction technique that integrates near-field and object-space interaction techniques for manipulating objects at a distance in virtual reality (VR). The objective of the hybrid interaction technique was to seamlessly leverage the strengths of both the near-field and object-space manipulation techniques. We employed bimanual near-field metaphor with scaled replica (BMSR) as our near-field interaction technique, which enabled us to perform multilevel degrees-of-freedom (DoF) separation transformations, such as 1~3DoF translation, 1~3DoF uniform and anchored scaling, 1DoF and 3DoF rotation, and 6DoF simultaneous translation and rotation, with enhanced depth perception and fine motor control provided by near-field manipulation techniques. The object-space interaction technique we utilized was the classic Scaled HOMER, which is known to be effective and appropriate for coarse transformations in distant object manipulation. In a repeated measures within-subjects evaluation, we empirically evaluated the three interaction techniques for their accuracy, efficiency, and economy of movement in pick-and-place, docking, and tunneling tasks in VR. Our findings revealed that the near-field BMSR technique outperformed the object space Scaled HOMER technique in terms of accuracy and economy of movement, but the participants performed more slowly overall with BMSR. Additionally, our results revealed that the participants preferred to use the hybrid interaction technique, as it allowed them to switch and transition seamlessly between the constituent BMSR and Scaled HOMER interaction techniques, depending on the level of accuracy, precision and efficiency required.
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