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稳健的基于光学的虚拟现实手部交互。

Robust Optical Based Hand Interaction for Virtual Reality.

出版信息

IEEE Trans Vis Comput Graph. 2022 Dec;28(12):4186-4197. doi: 10.1109/TVCG.2021.3083411. Epub 2022 Oct 26.

Abstract

Using optical sensors to track hand gestures in virtual reality (VR) simulations requires issues such as occlusion, field-of-view, accuracy and stability of sensors to be addressed or mitigated. We introduce an optical hand-based interaction system that comprises two Leap Motion sensors mounted onto a VR headset at different orientations. Our system collects sensor data from the leap motions, combines and processes it to produce optimal hand tracking data, that minimises the effect of sensor occlusion and noise. This contrasts with previous systems that do not use multiple head-mounted sensors or incorporate hand-data aggregation. We also present a study that compares the proposed system with glove-based and traditional motion controller-based interaction. We investigate hand interactions effect on the feeling of naturalness and immersion. The results show that the use of two head-mounted sensors and the data aggregation system increased the number of valid hands presented to the user and can be successfully applied to VR. The user study shows that there is a strong preference for the proposed system due to the natural feeling and freeing interaction. The absence of an indirect interface such as gloves or controllers was found to aid in creating a more natural and immersive experience.

摘要

使用光学传感器在虚拟现实 (VR) 模拟中跟踪手部手势需要解决或减轻传感器的遮挡、视野、准确性和稳定性等问题。我们引入了一种基于光学的手部交互系统,该系统由两个 Leap Motion 传感器以不同的方向安装在 VR 头戴设备上组成。我们的系统从 Leap Motion 传感器中收集传感器数据,对其进行组合和处理,以生成最小化传感器遮挡和噪声影响的最佳手部跟踪数据。这与之前不使用多个头戴式传感器或不包含手部数据聚合的系统形成对比。我们还介绍了一项研究,该研究将提出的系统与基于手套和传统运动控制器的交互进行了比较。我们研究了手部交互对手感和沉浸感的影响。结果表明,使用两个头戴式传感器和数据聚合系统增加了呈现给用户的有效手的数量,并可成功应用于 VR。用户研究表明,由于自然的感觉和自由的交互,用户强烈倾向于使用该系统。研究发现,由于不存在手套或控制器等间接接口,因此有助于创造更自然和沉浸式的体验。

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