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3D MODELLING OF AN INDOOR SPACE USING A ROTATING STEREO FRAME CAMERA SYSTEM

机译:3D使用旋转立体声框架照相机系统建模室内空间

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Sophisticated indoor design and growing development in urban architecture make indoor spaces more complex. And the indoor spaces are easily connected to public transportations such as subway and train stations. These phenomena allow to transfer outdoor activities to the indoor spaces. Constant development of technology has a significant impact on people knowledge about services such as location awareness services in the indoor spaces. Thus, it is required to develop the low-cost system to create the 3D model of the indoor spaces for services based on the indoor models. In this paper, we thus introduce the rotating stereo frame camera system that has two cameras and generate the indoor 3D model using the system. First, select a test site and acquired images eight times during one day with different positions and heights of the system. Measurements were complemented by object control points obtained from a total station. As the data were obtained from the different positions and heights of the system, it was possible to make various combinations of data and choose several suitable combinations for input data. Next, we generated the 3D model of the test site using commercial software with previously chosen input data. The last part of the processes will be to evaluate the accuracy of the generated indoor model from selected input data. In summary, this paper introduces the low-cost system to acquire indoor spatial data and generate the 3D model using images acquired by the system. Through this experiments, we ensure that the introduced system is suitable for generating indoor spatial information. The proposed low-cost system will be applied to indoor services based on the indoor spatial information.
机译:城市建筑的复杂室内设计和日益增长的发展使室内空间更加复杂。室内空间很容易与地铁和火车站等公共交通连接。这些现象允许将户外活动转移到室内空间。技术的不断发展对人们对室内空间中的服务意识服务等服务的知识产生了重大影响。因此,需要开发低成本系统,以基于室内模型创建室内空间的3D模型。在本文中,我们介绍了具有两个相机的旋转立体声相机系统,并使用系统生成室内3D模型。首先,在一天内选择测试站点并在有一天内获取图像八次,具有不同的位置和高度。通过从总站获得的物体控制点互补测量。随着从系统的不同位置和高度获得数据,可以进行各种数据组合,并为输入数据选择几种合适的组合。接下来,我们使用具有先前选择的输入数据的商业软件生成了测试站点的3D模型。该过程的最后一部分是评估所生成的室内模型从所选输入数据的准确性。总之,本文介绍了使用系统获取的图像获取室内空间数据并生成3D模型的低成本系统。通过该实验,我们确保引入的系统适合于产生室内空间信息。拟议的低成本系统将根据室内空间信息应用于室内服务。

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