定向漂移的人类补偿策略

Tobias Feigl, Christopher Mutschler, M. Philippsen
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引用次数: 7

摘要

无姿势(NP)跟踪系统依赖于位于用户头部的单个传感器来确定头部的位置。他们用惯性传感器估计头部方向,并分析身体运动来补偿他们的漂移。然而,随着方向漂移,VR用户会将他们的头和身体隐式地向一侧倾斜。因此,为了确定传感器漂移并明确调整VR显示器的方向,需要了解并考虑用户的头部和身体方向。本文研究了在VR中自然行走时,头部方向绕偏航轴漂移对用户绝对头部和身体方向的影响。我们研究随时间累积的漂移程度,用户如何体验和容忍它,以及用户如何应用策略来补偿较大的漂移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Human Compensation Strategies for Orientation Drifts
No-Pose (NP) tracking systems rely on a single sensor located at the user's head to determine the position of the head. They estimate the head orientation with inertial sensors and analyze the body motion to compensate their drift. However with orientation drift, VR users implicitly lean their heads and bodies sidewards. Hence, to determine the sensor drift and to explicitly adjust the orientation of the VR display there is a need to understand and consider both the user's head and body orientations. This paper studies the effects of head orientation drift around the yaw axis on the user's absolute head and body orientations when walking naturally in the VR. We study how much drift accumulates over time, how a user experiences and tolerates it, and how a user applies strategies to compensate for larger drifts.
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