针对光照变化的动态投影映射鲁棒高速跟踪

Tomohiro Sueishi, H. Oku, M. Ishikawa
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引用次数: 47

摘要

动态投影映射(Dynamic Projection Mapping)是一种基于投影的AR技术,通过高速光轴控制器通过旋转镜实现运动物体的无偏差,它在高速跟踪的稳定性和各种投影内容的高可视性之间进行了权衡。本文通过引入带有动态投影映射光轴控制器的反向反射背景,实现了一种针对光照变化(包括投影图像)提供无标记物体的鲁棒高速跟踪系统。用投影映射内容投射低强度的主教光,从背景反射的光对高速摄像机来说是足够的,但对观察者来说几乎是不可见的。此外,我们还引入了自适应窗口和外围加权侵蚀来保持准确的高速跟踪。在弱光条件下,我们从相机和观察者的角度研究了漫反射和反向反射的视觉性能。我们评估了相对于光照和非目标物体引起的干扰的稳定性。该系统实现了低光强环境下部分光照良好内容的动态投影映射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robust high-speed tracking against illumination changes for dynamic projection mapping
Dynamic Projection Mapping, projection-based AR for a moving object without misalignment by a high-speed optical axis controller by rotational mirrors, has a trade-off between stability of highspeed tracking and high visibility for a variety of projection content. In this paper, a system that will provide robust high-speed tracking without any markers on objects against illumination changes, including projected images, is realized by introducing a retroreflective background with the optical axis controller for Dynamic Projection Mapping. Low-intensity episcopic light is projected with Projection Mapping content, and the light reflected from the background is sufficient for high-speed cameras but is nearly invisible to observers. In addition, we introduce adaptive windows and peripheral weighted erosion to maintain accurate high-speed tracking. Under low light conditions, we examined the visual performance of diffuse reflection and retroreflection from both camera and observer viewpoints. We evaluated stability relative to illumination and disturbance caused by non-target objects. Dynamic Projection Mapping with partially well-lit content in a low-intensity light environment is realized by our proposed system.
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