标题: | 整合多摄影机之三维监控系统 A 3-D Surveillance System using Integrated Multiple Cameras |
作者: | 黄永煌 Huang, Yung-Huang 陈永升 Chen, Yong-Sheng 资讯学院资讯科技(IT)产业研发硕士专班 |
关键字: | 三维监控系统;平面补钉模型化;告示板;3-D surveillance system;planar patch modeling;billboard |
公开日期: | 2009 |
摘要: | 本论文发展一套视讯监控系统,整合多支摄影机的画面到三维模型上,并撷取影像中的移动物体加以立体化,呈现一个具空间感且可即时互动的监控画面。常见的传统监控系统是利用电视墙来显示所有摄影机的画面,监控人员往往很难了解每个画面之间的空间对应关系,并且容易混淆,在情况紧急时,可能无法做出正确的判断。透过我们的系统,监控人员可以任意选择想要观看的视点,且摄影机的空间关系已融入监控环境的三维模型。如此一来,同时监控多支摄影机不再是一件困难的事。 本系统可以分为两部分,建立摄影机和三维模型的对应关系,和撷取移动物体加以立体化。首先,我们使用平面补钉模型化(planar patch modeling)建立三维模型,然后在监控场景中放入一些标记,量取标记之间的相对位置关系,再利用单应性矩阵(homography matrix)来表示摄影机画面和监控场景的对应关系。利用这些资讯建立查询表(lookup table),来融合出三维的监控场景。接着,使用背景模型(background modeling)侦测移动物体,并使用告示板(billboarding)技术来立体化显示此物体的影像。最后我们得到一个三维视觉化的整合监控系统。 In conventional surveillance systems, multiple screens are often required for displaying video from multiple cameras and may cause the difficulty of operators to keep track of targets due to the lack of special relationship among the screens. In this thesis, we develop an effective surveillance system with the 3-D environment model that integrates multiple scenes into one single comprehensive view. The system does not require accurate camera calibration and environment model construction with advanced equipments, and can provide a multiscale operating view for showing the status of the surveillance area. To integrate the monitored area with camera views, the 3-D environment is first manually constructed by planar patch modeling. To map video contents to the corresponding areas of the 3-D model, different homography transformations are estimated for every pairs of image regions in the video contents and corresponding areas in the 3-D model. The planar patches in the 3-D model are automatically divided into different sizes and numbers of the smaller patches are determined by the intensity differences between the image polygons obtained from the homography transformation and texture mapping. Lookup tables are built beforehand for accelerating the coordinate mapping. In monitored scenes, 3-D objects including pedestrians, are projected to the imaging sensor planes through perspective transformation. Therefore, all 3-D objects will appear flattened on the planes in the 3-D model after texture mapping. To overcome this problem, we use billboarding method to model the 3-D moving objects. First, each foreground object extracted from the scene by background modeling is mapped to a billboard, and then vertically aligned to the ground plane. In this way we can adjust the direction of foreground objects according to the viewing direction. The proposed system can provide operators the situational awareness of the monitored site, including activities of the tracking targets through a comprehensive 3-D view. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079690518 http://hdl.handle.net/11536/44149 |
显示于类别: | Thesis |
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