首页> 外文会议>Asian conference on remote sensingACRS >3D Visualization of Building Interior using Omnidirectional Images
【24h】

3D Visualization of Building Interior using Omnidirectional Images

机译:使用全向图像的建筑物内部的3D可视化

获取原文

摘要

Until recently, most mapping and visualization efforts have been concentrated for the outdoor environment. Nowadays, the development of maps of the indoor environment have been catching up with new technologies for data collection, processing, and modeling. The need for indoor maps is also emphasized with the demand for data and information about indoor spaces, and for its applications in evacuation, way-finding and visualization. Omnidirectional images present a simple yet realistic method for geographically representing indoor space compared to commonly-utilized data like point cloud or solid object models, since (x, y. z) coordinates may be obtained from each pixel because they may be georeferenced. In addition, its 360-degree field-of view (FOV) gives detailed and seamless visualization to users. This paper presents a workflow for collecting omnidirectional images for generating a 3D visualization of a building interior in the form of a virtual tour. The experiment was conducted in a building in a university campus. CAD files of the building were used as a guide for selecting the Shooting Points, which are locations in the hallway from which image capture is carried out. A DSLR camera with a fisheye lens mounted on a rotator and tripod was used at these Shooting Points to acquire at least 6 fisheye images completing a 360-degree FOV to ensure sufficient overlap. The images captured at each Shooting Point were processed using PTGui. a panoramic stitching tool. The overlaps ensured that control points common for at least 2 images in the set would be selected and used for stitching. The stitched image is checked for misalignment or erroneous stitching, and additional control points may be selected if necessary. To generate the 3D virtual tour, the images were linked based on how each Shooting Point is connected to an adjacent Shooting Point using PanoTour. In PanoTour. the location of adjacent Shooting Points would be pinpointed, and the corresponding view from those points in the corresponding images would be indicated. This results in a virtual tour that may be opened with any web browser and gives an immersive and seamless visualization of navigation a 3D indoor environment.
机译:直到最近,大多数映射和可视化努力都集中了户外环境。如今,室内环境的地图的发展已经追赶数据收集,处理和建模的新技术。还强调了对室内空间的数据和信息的需求,以及其在疏散,方式寻找和可视化方面的应用需求。全方位图像呈现为相对于坐标可以从每个像素中获得,因为它们可被地理参考像点云或固体对象模型中,由于(X,Y。Z)共同使用的数据表示在地理室内空间的简单而实际的方法。此外,它的360度视野(FOV)向用户提供了详细和无缝可视化。本文介绍了用于收集全向图像的工作流程,以以虚拟巡回赛的形式生成建筑内部的3D可视化。实验是在大学校园的建筑物中进行的。建筑物的CAD文件被用作选择拍摄点的指南,这些指南是从中执行图像捕获的走廊中的位置。使用安装在旋转器和三脚架上的鱼眼镜头的DSLR相机用于这些拍摄点,以获取至少6个Fisheye图像,完成360度FOV以确保足够重叠。使用PTGUI处理在每个拍摄点处捕获的图像。全景缝合工具。重叠确保了该组中至少2个图像中共同的控制点被选择并用于拼接。检查缝合图像以进行未对准或错误的拼接,并且如果需要,可以选择额外的控制点。为了生成3D虚拟巡视,根据每个拍摄点使用Panotour如何连接到相邻拍摄点的图像。在panotour。相邻拍摄点的位置将被确定,并且将指示来自相应图像中的那些点的相应视图。这导致可以使用任何Web浏览器打开的虚拟巡视,并提供导航3D室内环境的沉浸和无缝可视化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号