IEEE Trans Vis Comput Graph. 2017 Nov;23(11):2419-2429. doi: 10.1109/TVCG.2017.2734478. Epub 2017 Aug 10.
This paper presents a novel projected pixel localization principle for online geometric registration in dynamic projection mapping applications. We propose applying a time measurement of a laser projector raster-scanning beam using a photosensor to estimate its position while the projector displays meaningful visual information to human observers. Based on this principle, we develop two types of position estimation techniques. One estimates the position of a projected beam when it directly illuminates a photosensor. The other localizes a beam by measuring the reflection from a retro-reflective marker with the photosensor placed in the optical path of the projector. We conduct system evaluations using prototypes to validate this method as well as to confirm the applicability of our principle. In addition, we discuss the technical limitations of the prototypes based on the evaluation results. Finally, we build several dynamic projection mapping applications to demonstrate the feasibility of our principle.
本文提出了一种新颖的投影像素定位原理,用于动态投影映射应用中的在线几何配准。我们提出使用光电传感器对激光投影仪光栅扫描光束进行时间测量,以估计其位置,同时投影仪向人类观察者显示有意义的视觉信息。基于这一原理,我们开发了两种类型的位置估计技术。一种技术用于估计直接照射光电传感器的投影光束的位置。另一种技术通过测量放置在投影仪光路中的光电传感器从回射标记反射的光来定位光束。我们使用原型进行了系统评估,以验证该方法以及我们原理的适用性。此外,我们还根据评估结果讨论了原型的技术限制。最后,我们构建了几个动态投影映射应用程序,以展示我们原理的可行性。