论文标题

fibar:将光纤嵌入3D打印对象中,以在动态投影映射中进行活动标记

FibAR: Embedding Optical Fibers in 3D Printed Objects for Active Markers in Dynamic Projection Mapping

论文作者

Tone, Daiki, Iwai, Daisuke, Hiura, Shinsaku, Sato, Kosuke

论文摘要

本文提出了一种用于动态投影映射(PM)的新型活动标记,该标记发出了代表其ID的红外(IR)光的时间闪烁模式。我们使用多物质的三维(3D)打印机来制造具有光纤的投影对象,该对象可以指导物体底部附加的LED的IR光。光纤的光圈通常很小。因此,它对人类观察者的投影不明显,可以置于投影表面的强弯曲部分。此外,我们系统的工作范围可能大于以前的基于标记的方法,因为从理论上讲,闪烁的模式可以通过位于与标记较远的距离范围内的相机识别。我们建议一种自动标记放置算法将多个活性标记物扩散到投影对象的表面上,以便可以使用来自任意方向的捕获的图像来稳健地估算其姿势。我们还提出了一个优化框架,以确定光纤路线的方式,即可以避免纤维的碰撞,同时最大程度地减少纤维中光强度的损失。通过使用包含强弯曲表面的三个制造物体进行的实验,我们确认所提出的方法可以在显着较宽的工作范围内实现精确的动态PM。

This paper presents a novel active marker for dynamic projection mapping (PM) that emits a temporal blinking pattern of infrared (IR) light representing its ID. We used a multi-material three dimensional (3D) printer to fabricate a projection object with optical fibers that can guide IR light from LEDs attached on the bottom of the object. The aperture of an optical fiber is typically very small; thus, it is unnoticeable to human observers under projection and can be placed on a strongly curved part of a projection surface. In addition, the working range of our system can be larger than previous marker-based methods as the blinking patterns can theoretically be recognized by a camera placed at a wide range of distances from markers. We propose an automatic marker placement algorithm to spread multiple active markers over the surface of a projection object such that its pose can be robustly estimated using captured images from arbitrary directions. We also propose an optimization framework for determining the routes of the optical fibers in such a way that collisions of the fibers can be avoided while minimizing the loss of light intensity in the fibers. Through experiments conducted using three fabricated objects containing strongly curved surfaces, we confirmed that the proposed method can achieve accurate dynamic PMs in a significantly wide working range.

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