Accuracy of 3D motion tracking using a stereocamera

M. Divjak, D. Zazula
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引用次数: 2

Abstract

Several approaches for tracking the movement of objects in 3D space exist. Most of them actually track the motion of special sensors attached to the object of interest. This method is often not appropriate, because it obstructs the free movement of the object. However, some localization approaches depend only on natural properties of objects and don't require any special hardware. In this paper we present the overview of an optical tracking system that uses stereoscopic camera to detect motion. To estimate its accuracy we compare the results with reference measurements made by magnetic tracking device. We report results of several experiments and present the main factors that contribute to the total tracking error. The average difference between the two tracking systems is 1.7 cm. In the end we present a few improvements that could further reduce the tracking error.
使用立体摄像机进行三维运动跟踪的精度
存在几种跟踪三维空间中物体运动的方法。它们中的大多数实际上是跟踪附着在感兴趣的物体上的特殊传感器的运动。这种方法通常是不合适的,因为它阻碍了物体的自由运动。然而,一些定位方法只依赖于对象的自然属性,不需要任何特殊的硬件。本文介绍了一种利用立体摄像机检测运动的光学跟踪系统。为了估计其精度,我们将结果与磁跟踪装置的参考测量结果进行了比较。我们报告了几个实验的结果,并提出了导致总跟踪误差的主要因素。两个跟踪系统之间的平均差异为1.7厘米。最后,我们提出了一些改进,可以进一步减少跟踪误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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