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An automated calibration method for non-see-through head mounted displays

机译:非透明头戴式显示器的自动校准方法

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摘要

Accurate calibration of a head mounted display (HMD) is essential both for research on the visual system and for realistic interaction with virtual objects. Yet, existing calibration methods are time consuming and depend on human judgements, making them error prone, and are often limited to optical see-through HMDs. Building on our existing approach to HMD calibration Gilson et al. (2008), we show here how it is possible to calibrate a non-see-through HMD. A camera is placed inside a HMD displaying an image of a regular grid, which is captured by the camera. The HMD is then removed and the camera, which remains fixed in position, is used to capture images of a tracked calibration object in multiple positions. The centroids of the markers on the calibration object are recovered and their locations re-expressed in relation to the HMD grid. This allows established camera calibration techniques to be used to recover estimates of the HMD display's intrinsic parameters (width, height, focal length) and extrinsic parameters (optic centre and orientation of the principal ray). We calibrated a HMD in this manner and report the magnitude of the errors between real image features and reprojected features. Our calibration method produces low reprojection errors without the need for error-prone human judgements.
机译:头戴式显示器(HMD)的准确校准对于视觉系统的研究以及与虚拟对象的现实交互都至关重要。但是,现有的校准方法很耗时,并且要依靠人工判断,因此容易出错,并且通常仅限于光学透明的HMD。基于我们现有的HMD校准方法,Gilson等人。 (2008年),我们在这里展示了如何校准非透明HMD。将摄像机放置在HMD内,以显示由摄像机捕获的规则网格的图像。然后将HMD卸下,并将保持固定位置的摄像机用于在多个位置捕获跟踪的校准对象的图像。恢复标定对象上标记的质心,并相对于HMD网格重新表达其位置。这允许使用已建立的相机校准技术来恢复对HMD显示器的固有参数(宽度,高度,焦距)和外部参数(光学中心和主光线方向)的估计。我们以这种方式校准了HMD,并报告了真实图像特征与重新投影特征之间的误差幅度。我们的校准方法产生的重投影误差很小,而无需人工判断。

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