【24h】

Measuring world-locking accuracy in AR/MR head-mounted displays

机译:测量AR / MR头戴式显示器中的世界锁定精度

获取原文

摘要

Reliable world locking in augmented and mixed reality (AR/MR) devices is important for achieving immersion and critical for technical applications that rely on stable anchoring of virtual objects in the real world. To achieve this, a head-mounted display (HMD) must maintain accurate knowledge of its real-world position and orientation. We describe a method for measuring the six-degrees-of-freedom (DOF) positioning accuracy of an HMD, and how the same method can be extended to quantify the accuracy of anchoring virtual objects in the real world, i.e., world locking. An HMD is placed on a 6-DOF test jig comprising a motion system with high precision encoders and a time-synchronized imaging system. The HMD is made to display a 3D grid of unique identification markers that are detected by a machine vision camera in real time, while the robot is moving. This allows us to track the position and pose of the virtual camera and compare that with the known HMD position and pose. Using similar methodology, we can display virtual objects with a suitable number of unique identification markers. Their virtual object position and pose can then be compared to the real HMD position, thereby quantifying the accuracy of world locking. For improved accuracy, markers can also be printed out and pasted onto real-world objects. Other temporal parameters can also be computed, including motion-to-photon latency, spatial jitter, pose drift and prediction over/undershoot. The obtained results can be used to improve or recalibrate the positioning software and hardware of the head-mounted device.
机译:增强和混合现实(AR / MR)设备的可靠世界锁定对于实现沉浸和对依赖现实世界中虚拟物体稳定锚定的技术应用至关重要。为实现这一点,头戴式显示器(HMD)必须保持对其真实位置和方向的准确了解。我们描述了一种测量HMD的六个自由度(DOF)定位精度的方法,以及如何扩展相同的方法以量化现实世界中的虚拟物体的准确性,即世界锁定。将HMD放置在6 DOF测试夹具上,包括具有高精度编码器的运动系统和时间同步成像系统。 HMD由机器人移动时,显示HMD以显示由机器视觉相机检测的独特识别标记的3D网格。这使我们能够跟踪虚拟相机的位置和姿势,并将其与已知的HMD位置和姿势进行比较。使用类似的方法,我们可以使用合适数量的唯一识别标记显示虚拟对象。然后可以将其虚拟对象位置和姿势与真实的HMD位置进行比较,从而量化世界锁定的准确性。为了提高准确性,也可以打印出标记并粘贴到现实世界的物体上。还可以计算其他时间参数,包括运动到光子等待时间,空间抖动,姿势漂移和预测超过/下冲。获得的结果可用于改善或重新校准头戴式设备的定位软件和硬件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号