Optical see-through HMD calibration: a stereo method validated with a video see-through system

Yakup Genç, F. Sauer, Fabian Wenzel, M. Tuceryan, Nassir Navab
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引用次数: 66

Abstract

We present initial results from ongoing work to calibrate optical see-through head-mounted displays (HMDs). We have developed a method to calibrate stereoscopic optical see-through HMDs based on the 3D alignment of a target in the physical world with a virtual object in the user's view. This is an extension of the single point active alignment method (SPAAM) (Tuceryan and Navab, 2000) developed for monocular HMDs. Going from the monocular to the stereoscopic optical HMDs for calibration purposes is not straightforward. This is in part due to the perceptual complexity of the stereo fusion process bringing up completely new challenges including the choice of the shape of the virtual object, the physical target and how to display the virtual object without any knowledge of the characteristics of the HMD and eye combination, i.e. the projection model. We have addressed these issues and proposed a solution for the calibration problem which we have validated through experiments on the see-through HMD system described in (Sauer et al., 2000). By experimenting, we have found the appropriate type of virtual objects and physical features to be used in the 3D alignment. Furthermore, we have measured how good the alignment and calibration actually are.
光学透视式头戴式显示器校准:用视频透视系统验证的立体方法
我们介绍了正在进行的校准光学透明头戴式显示器(hmd)的初步结果。我们已经开发出一种方法来校准立体光学透明头戴式显示器,该方法基于物理世界中的目标与用户视图中的虚拟对象的3D对齐。这是为单目头戴式显示器开发的单点主动对准方法(SPAAM)的扩展(Tuceryan和Navab, 2000)。从单目到立体光学头戴式显示器进行校准并不简单。这部分是由于立体融合过程的感知复杂性带来了全新的挑战,包括虚拟物体形状的选择,物理目标以及如何在不了解HMD和眼睛组合特征(即投影模型)的情况下显示虚拟物体。我们已经解决了这些问题,并提出了一个校准问题的解决方案,我们已经通过在(Sauer等人,2000)中描述的透明HMD系统上的实验进行了验证。通过实验,我们找到了在3D对齐中使用的适当类型的虚拟对象和物理特征。此外,我们还测量了校准和校准的实际效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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