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Application of precise indoor position tracking to immersive virtual reality with translational movement support

机译:精确的室内位置跟踪在具有平移运动支持的沉浸式虚拟现实中的应用

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摘要

In this study, we propose an application for immersive virtual reality experiences, which integrates three-dimensional (3D) head-mounted displays (HMDs) with a precise indoor position tracking algorithm based on ultrasound. Our method provides a natural virtual reality experience with interaction by precisely matching the physical movements in the real world with those in the virtual environment, unlike other methods that require external input devices to move around in the virtual environment. Users can move within the assigned indoor space while carrying a wireless client device with the HMD, without the risk of colliding with obstacles or structures. The system is designed to provide the accurate 3D X, Y, and Z coordinate values of translational movements in real-time as well as the pitch, roll, and yaw values of rotational movements supported by the HMD, resulting in the six degrees of freedom required by immersive virtual reality. In addition, the system utilizes ultrasonic transducers in a grid format, which makes it simple to expand the position tracking coverage area, and supports simultaneous tracking of multiple users. Through experiments and a user study we show that the system obtains the accurate position of the moving objects and delivers a highly immersive virtual reality experience.
机译:在这项研究中,我们提出了一种沉浸式虚拟现实体验的应用程序,该应用程序将三维(3D)头戴式显示器(HMD)与基于超声的精确室内位置跟踪算法集成在一起。与其他需要外部输入设备在虚拟环境中移动的方法不同,我们的方法通过将现实世界中的物理移动与虚拟环境中的物理移动进行精确匹配,从而提供了一种自然的虚拟现实交互体验。用户可以在携带HMD的无线客户端设备的同时,在指定的室内空间内移动,而不会碰到障碍物或结构。该系统旨在实时提供平移运动的准确3D X,Y和Z坐标值,以及HMD支持的旋转运动的俯仰,侧倾和偏航值,从而实现六个自由度沉浸式虚拟现实所需要的。另外,该系统利用网格格式的超声换能器,这使得扩展位置跟踪覆盖范围变得简单,并支持同时跟踪多个用户。通过实验和用户研究,我们表明该系统获得了移动物体的准确位置,并提供了高度沉浸式的虚拟现实体验。

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