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Registration based on projective reconstruction technique for augmented reality systems

机译:基于投影重构技术的增强现实系统配准

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摘要

In AR systems, registration is one of the most difficult problems currently limiting their application. In this paper, we propose a simple registration method using projective reconstruction. This method consists of two steps: embedding and tracking. Embedding involves specifying four points to build the world coordinate system on which a virtual object will be superimposed. In tracking, a projective reconstruction technique is used to track these four specified points to compute the model view transformation for augmentation. This method is simple, as only four points need to be specified at the embedding stage and the virtual object can then be easily augmented onto a real scene from a video sequence. In addition, it can be extended to a scenario using the projective matrix that has been obtained from previous registration results using the same AR system. The proposed method has three advantages: 1) it is fast because the linear least square method can be used to estimate the related matrix in the algorithm and it is not necessary to calculate the fundamental matrix in the extended case. 2) A virtual object can still be superimposed on a related area even if some parts of the specified area are occluded during the whole process. 3) This method is robust because it remains effective even when not all the reference points are detected during the whole process, as long as at least six pairs of related reference points correspondences can be found. Some experiments have been conducted to validate the performance of the proposed method.
机译:在AR系统中,注册是当前限制其应用的最困难的问题之一。在本文中,我们提出了一种使用投影重建的简单配准方法。此方法包括两个步骤:嵌入和跟踪。嵌入涉及指定四个点以构建将在其上叠加虚拟对象的世界坐标系。在跟踪中,投影重建技术用于跟踪这四个指定点,以计算模型视图变换以进行增强。该方法很简单,因为在嵌入阶段仅需要指定四个点,然后可以轻松地将虚拟对象从视频序列扩展到真实场景。另外,它可以扩展到使用投影矩阵的场景,该投影矩阵是使用同一AR系统从先前的注册结果获得的。该方法具有三个优点:1)快速,因为可以使用线性最小二乘法估计算法中的相关矩阵,而在扩展情况下无需计算基本矩阵。 2)即使在整个过程中指定区域的某些部分被遮挡,虚拟对象仍可以叠加在相关区域上。 3)该方法是鲁棒的,因为即使在整个过程中未检测到所有参考点时,它仍然有效,只要可以找到至少六对相关参考点对应即可。已经进行了一些实验以验证所提出方法的性能。

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