稳健的绝对耳机跟踪扩展现实

Robert M. Tenny, Lisong Sun, Alper Duru, T. Humphreys
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引用次数: 0

摘要

提出了一种适用于扩展现实(XR)应用的新型头戴式跟踪框架。XR的增长需要精确和强大的跟踪机制,适用于室内和室外环境,并为全球参考框架提供锚定。通过将视觉同步定位和映射(SLAM)算法与紧密耦合的载波相位差分GNSS (CDGNSS)和惯性传感器子系统松散耦合,该系统旨在实现厘米级精度的全球参考跟踪,并在GNSS退化的长时间内持续进行跟踪。通过使用用于地图生成和维护的捆绑调整方法创建精确的地图,可以实现协作和持久的XR体验。对流水线中计算要求高的步骤的云或近边缘卸载进行了探索,以减少对耳机的计算需求。在GNSS中断情况下,根据里程漂移评估鲁棒跟踪性能。本文还探讨了由到达方向测量提供的额外耳机跟踪约束对附近蜂窝基站的好处。随着未来的无线标准越来越多地使用毫米波频率,这种测量将变得可行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust Absolute Headset Tracking for Extended Reality
This paper presents a novel headset tracking frame-work designed for extended reality (XR) applications. The growth of XR demands accurate and robust tracking mechanisms that are suitable for both indoor and outdoor environments and offer anchoring to a global reference frame. By loosely coupling a visual simultaneous localization and mapping (SLAM) algorithm to a tightly-coupled carrier phase differential GNSS (CDGNSS) and inertial sensor subsystem, the proposed system aims to achieve centimeter-accurate, globally-referenced tracking that persists during extended periods of GNSS degradation. Collaborative and persistent XR experiences are enabled through accurate map creation utilizing a bundle adjustment approach for map generation and maintenance. Cloud or near-edge offloading of computationally demanding steps in the pipeline is explored to reduce the computational demand on the headset. Robust tracking performance is evaluated in terms of odometric drift under GNSS outages. This paper also explores the benefit of additional headset tracking constraints offered by direction-of-arrival measurements to nearby cellular base stations. Such measurements will become available as future wireless standards make increasing use of mmWave frequencies.
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