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Subjective Evaluation of a Semi-Automatic Optical See-Through Head-Mounted Display Calibration Technique

机译:半自动光学透视头戴式显示器校准技术的主观评估

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With the growing availability of optical see-through (OST) head-mounted displays (HMDs) there is a present need for robust, uncomplicated, and automatic calibration methods suited for non-expert users. This work presents the results of a user study which both objectively and subjectively examines registration accuracy produced by three OST HMD calibration methods: (1) SPAAM, (2) Degraded SPAAM, and (3) Recycled INDICA, a recently developed semi-automatic calibration method. Accuracy metrics used for evaluation include subject provided quality values and error between perceived and absolute registration coordinates. Our results show all three calibration methods produce very accurate registration in the horizontal direction but caused subjects to perceive the distance of virtual objects to be closer than intended. Surprisingly, the semi-automatic calibration method produced more accurate registration vertically and in perceived object distance overall. User assessed quality values were also the highest for Recycled INDICA, particularly when objects were shown at distance. The results of this study confirm that Recycled INDICA is capable of producing equal or superior on-screen registration compared to common OST HMD calibration methods. We also identify a potential hazard in using reprojection error as a quantitative analysis technique to predict registration accuracy. We conclude with discussing the further need for examining INDICA calibration in binocular HMD systems, and the present possibility for creation of a closed-loop continuous calibration method for OST Augmented Reality.
机译:随着光学透明(OST)头戴式显示器(HMD)的可用性不断增长,目前需要适用于非专业用户的鲁棒,简单,自动的校准方法。这项工作提出了一项用户研究的结果,该研究客观地和主观地检查了三种OST HMD校准方法产生的配准精度:(1)SPAAM,(2)降级的SPAAM,以及(3)回收的INDICA,这是最近开发的半自动校准方法。用于评估的准确性度量包括受检者提供的质量值以及感知和绝对配准坐标之间的误差。我们的结果表明,所有三种校准方法都可以在水平方向上产生非常精确的配准,但会导致对象感知到虚拟物体的距离比预期的要近。出人意料的是,半自动校准方法在垂直方向和整体可感知物体距离内产生了更精确的配准。用户评估的质量值也是可回收INDICA的最高值,尤其是在远处显示物体时。这项研究的结果证实,与普通的OST HMD校准方法相比,再生INDICA能够产生相同或更好的屏幕配准。我们还使用重投影误差作为定量分析技术来预测套准准确性,从而确定潜在的危害。最后,我们讨论了在双目HMD系统中检查INDICA校准的进一步需求,以及为OST增强现实创建闭环连续校准方法的当前可能性。

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