3D position measurement of planar photo detector using gradient patterns

Tatsuya Kodera, M. Sugimoto, Ross T. Smith, B. Thomas
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引用次数: 1

Abstract

We propose a three dimensional position measurement method employing planar photo detectors to calibrate a Spatial Augmented Reality system of unknown geometry. In Spatial Augmented Reality, projectors overlay images onto an object in the physical environment. For this purpose, the alignment of the images and physical objects is required. Traditional camera based 3D position tracking systems, such as multi-camera motion capture systems, detect the positions of optical markers in two-dimensional image plane of each camera device, so those systems require multiple camera devices at known locations to obtain 3D position of the markers. We introduce a detection method of 3D position of a planar photo detector by projecting gradient patterns. The main contribution of our method is to realize an alignment of the projected images with the physical objects and measuring the geometry of the objects simultaneously for Spatial Augmented Reality applications.
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基于梯度模式的平面光电探测器三维位置测量
提出了一种利用平面光电探测器对未知几何形状的空间增强现实系统进行三维位置测量的方法。在空间增强现实中,投影仪将图像覆盖到物理环境中的物体上。为此,需要对图像和物理对象进行对齐。传统的基于摄像机的三维位置跟踪系统,如多摄像机运动捕捉系统,检测光学标记在每个摄像机设备的二维图像平面上的位置,因此这些系统需要在已知位置的多个摄像机设备来获得标记的三维位置。介绍了一种利用投影梯度模式检测平面光电探测器三维位置的方法。该方法的主要贡献是实现了投影图像与物理对象的对齐,并同时测量对象的几何形状,用于空间增强现实应用。
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