Optical tracking and calibration of tangible interaction devices

A. V. Rhijn, J. D. Mulder
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引用次数: 24

Abstract

In this paper, a novel optical tracking and object calibration system is presented for the recognition and pose estimation of tangible interaction devices for virtual and augmented reality systems. The calibration system allows a user to automatically generate models of the relative positions of point-shaped markers attached to interaction devices, simply by moving them in front of the cameras. There are virtually no constraints on the shape of interaction devices. The tracking method takes the calibrated models as input, and recognizes devices by subgraph matching. Both the calibration and tracking methods can handle partial occlusion. Results show the proposed techniques are efficient, accurate, and robust.
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有形交互装置的光学跟踪与校准
本文针对虚拟现实和增强现实系统中实体交互设备的识别和姿态估计,提出了一种新型的光学跟踪和目标标定系统。校准系统允许用户自动生成附着在交互设备上的点状标记的相对位置模型,只需在相机前移动它们。实际上,交互设备的形状没有任何限制。该跟踪方法以标定后的模型为输入,通过子图匹配对设备进行识别。校准和跟踪方法都可以处理部分遮挡。结果表明,该方法具有高效、准确、鲁棒性好等优点。
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