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Mechanical assembly assistance using marker-less augmented reality system

机译:使用无标记增强现实系统的机械装配辅助

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摘要

Purpose - This paper aims to propose a real-time augmented reality (AR)-based assembly assistance system using a coarse-to-fine marker-less tracking strategy. The system automatically adapts to tracking requirement when the topological structure of the assembly changes after each assembly step. Design/methodology/approach - The prototype system's process can be divided into two stages: the offline preparation stage and online execution stage. In the offline preparation stage, planning results (assembly sequence, parts position, rotation, etc.) and image features [gradient and oriented FAST and rotated BRIEF (ORB)features] are extracted automatically from the assembly planning process. In the online execution stage, too, image features are extracted and matched with those generated offline to compute the camera pose, and planning results stored in XML files are parsed to generate the assembly instructions for manipulators. In the prototype system, the working range of template matching algorithm, LINE-MOD, is first extended by using depth information; then, a fast and robust marker-less tracker that combines the modified LINE-MOD algorithm and ORB tracker is designed to update the camera pose continuously. Furthermore, to track the camera pose stably, a tracking strategy according to the characteristic of assembly is presented herein. Findings - The tracking accuracy and time of the proposed marker-less tracking approach were evaluated, and the results showed that the tracking method could run at 30 fps and the position and pose tracking accuracy was slightly superior to ARToolKit. Originality/value - The main contributions of this work are as follows: First, the authors present a coarse-to-fine marker-less tracking method that uses modified state-of-the-art template matching algorithm, LINE-MOD, to find the coarse camera pose. Then, a feature point tracker ORB is activated to calculate the accurate camera pose. The whole tracking pipeline needs, on average, 24.35 ms for each frame, which can satisfy the real-time requirement for AR assembly. On basis of this algorithm, the authors present a generic tracking strategy according to the characteristics of the assembly and develop a generic AR-based assembly assistance platform. Second, the authors present a feature point mismatch-eliminating rule based on the orientation vector. By obtaining stable matching feature points, the proposed system can achieve accurate tracking results. The evaluation of the camera position and pose tracking accuracy result show that the study's method is slightly superior to ARToolKit markers.
机译:目的-本文旨在提出一种使用粗糙到精细的无标记跟踪策略的基于实时增强现实(AR)的装配辅助系统。当组装的拓扑结构在每个组装步骤之后发生变化时,系统会自动适应跟踪需求。设计/方法/方法-原型系统的过程可以分为两个阶段:离线准备阶段和在线执行阶段。在离线准备阶段,从装配计划过程中自动提取计划结果(装配顺序,零件位置,旋转等)和图像特征(渐变和定向的FAST以及旋转的Brief(ORB)特征)。在在线执行阶段,图像特征也会被提取并与离线生成的图像特征进行匹配,以计算相机姿态,并且解析存储在XML文件中的计划结果,以生成用于机械手的组装指令。在原型系统中,首先通过使用深度信息来扩展模板匹配算法LINE-MOD的工作范围。然后,结合修改后的LINE-MOD算法和ORB跟踪器的快速,健壮的无标记跟踪器被设计为连续更新相机姿态。此外,为了稳定地跟踪摄像机的姿势,本文提出了一种根据装配特性的跟踪策略。发现-对提出的无标记跟踪方法的跟踪精度和时间进行了评估,结果表明该跟踪方法可以30 fps的速度运行,并且位置和姿势跟踪精度略优于ARToolKit。原创性/价值-这项工作的主要贡献如下:首先,作者提出了一种从粗到精的无标记跟踪方法,该方法使用改良的最新模板匹配算法LINE-MOD来查找粗略的相机姿势。然后,激活特征点跟踪器ORB以计算出准确的相机姿态。整个跟踪流程平均每帧需要24.35 ms,可以满足AR组装的实时性要求。在此算法的基础上,作者根据装配体的特点提出了通用的跟踪策略,并开发了基于AR的通用装配辅助平台。其次,作者提出了基于方向矢量的特征点失配消除规则。通过获得稳定的匹配特征点,所提出的系统可以获得准确的跟踪结果。对摄像机位置和姿态跟踪精度结果的评估表明,该研究方法比ARToolKit标记器略胜一筹。

著录项

  • 来源
    《Assembly Automation》 |2018年第1期|77-87|共11页
  • 作者单位

    Key Laboratory of Contemporary Design and Integrated Manufacturing Technology, Ministry of Education, Northwestern Polytechnical University, Xi'an, China;

    Key Laboratory of Contemporary Design and Integrated Manufacturing Technology, Ministry of Education, Northwestern Polytechnical University, Xi'an, China;

    Key Laboratory of Contemporary Design and Integrated Manufacturing Technology, Ministry of Education, Northwestern Polytechnical University, Xi'an, China;

    Key Laboratory of Contemporary Design and Integrated Manufacturing Technology, Ministry of Education, Northwestern Polytechnical University, Xi'an, China;

    Key Laboratory of Contemporary Design and Integrated Manufacturing Technology, Ministry of Education, Northwestern Polytechnical University, Xi'an, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tracking; Augmented reality; Assembly; Marker-less; Line-mod; ORB;

    机译:跟踪;增强现实;部件;无标记;Line-mod;天体;

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