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An automatic 3D reconstruction system for texture-less objects

机译:用于纹理对象的自动3D重建系统

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Structure from Motion (SfM) is an image based method for 3D reconstruction of objects. This method coupled with Dense Multi-View Stereo (DMVS) can be used to generate an accurate point cloud of texture-full objects. Although this process is fully automatic, capturing images in proper locations is hard especially for texture-less objects which need a pattern projection procedure to have a successful matching step in SfM. This study aims to propose an automatic and portable system which can provide a pattern on objects and capture a set of high quality images in a way that a complete and accurate 3D model can be generated by the captured images using SFM and DMVS method. The system consists of three parts including a glassy turntable with a novel pattern projection system, a digital camera located on a mono-pod mounted on a length adjustable bar attached to the box of turntable and a controller system to control two other parts. Given the speed and step parameters for the system in a smart phone as the controller system, the digital camera automatically captures an image after every rotation step of the table. To evaluate the system, five different objects were tested under four criteria including plane fitting, structural resolution test, scale resolving test and comparing with a reference 3D model obtained with a commercial accurate laser scanner known as GOM ATOS Compact laser scanner. The average standard deviation for all the cited criteria was around 0.2 mm which illustrates the ability of the proposed system to capture high quality images for 3D reconstruction of texture-less objects. (C) 2019 Elsevier B.V. All rights reserved.
机译:来自运动的结构(SFM)是一种基于图像的对象的三维重建方法。该方法与密集的多视图立体声(DMV)耦合,可用于生成纹理完整对象的准确点云。虽然该过程是全自动的,但是在适当位置处的捕获图像很难尤其适用于需要图案投影过程的纹理对象以在SFM中具有成功的匹配步骤。本研究旨在提出一种自动和便携式系统,可以在物体上提供图案,并以使用SFM和DMVS方法可以通过捕获的图像生成完整和准确的3D模型的方式提供一组高质量图像。该系统由三个部件组成,包括新型图案投影系统的玻璃转盘,位于安装在连接到转盘的长度可调杆上的单扇子上的数码相机和控制器系统上的单扇子上,以控制另外两个部件。鉴于智能手机中系统的速度和步进参数作为控制器系统,数码相机在表的每个旋转步骤之后自动捕获图像。为了评估系统,在四个标准下测试五种不同的物体,包括平面拟合,结构分辨率测试,比例解析测试,并与使用称为GOM ATOS紧凑型激光扫描仪的商业精确激光扫描仪获得的参考3D模型进行比较。所有引用标准的平均标准偏差约为0.2mm,其示出了所提出的系统捕获高质量图像以进行3D重建的纹理物体的能力。 (c)2019年Elsevier B.V.保留所有权利。

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