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Projection-based augmented reality system for assembly guidance and monitoring

机译:基于投影的组装指导和监测的增强现实系统

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Purpose - This study aims to monitor and guide the assembly process. The operators need to change the assembly process according to the products' specifications during manual assembly of mass customized production. Traditional information inquiry and display methods, such as manual lookup of assembly drawings or electronic manuals, are inefficient and error-prone. Design/methodology/approach - This paper proposes a projection-based augmented reality system (PBARS) for assembly guidance and monitoring. The system includes a projection method based on viewpoint tracking, in which the position of the operator's head is tracked and the projection images are changed correspondingly. The assembly monitoring phase applies a method for parts recognition. First, the pixel local binary pattern (PX-LBP) operator is achieved by merging the classical LBP operator with the pixel classification process. Afterward, the PX-LBP features of the depth images are extracted and the randomized decision forests classifier is used to get the pixel classification prediction image (PCPI). Parts recognition and assembly monitoring is performed by PCPI analysis. Findings - The projection image changes with the viewpoint of the human body, hence the operators always perceive the three-dimensional guiding scene from different viewpoints, improving the human-computer interaction. Part recognition and assembly monitoring were achieved by comparing the PCPIs, in which missing and erroneous assembly can be detected online. Originality/value - This paper designed the PBARS to monitor and guide the assembly process simultaneously, with potential applications in mass customized production. The parts recognition and assembly monitoring based on pixels classification provides a novel method for assembly monitoring.
机译:目的 - 本研究旨在监测和指导装配过程。操作员需要根据产品的规格在大规模定制生产中的产品规格改变装配过程。传统信息查询和显示方法,如手动查找装配图纸或电子手册,效率低,易于出错。设计/方法/方法 - 本文提出了一种基于投影的增强现实系统(PBAR),用于组装指导和监测。该系统包括基于视点跟踪的投影方法,其中跟踪操作者的头部的位置,并且相应地改变投影图像。装配监控阶段适用于部件识别的方法。首先,通过利用像素分类处理来实现像素局部二进制图案(PX-LBP)操作员。之后,提取深度图像的PX-LBP特征,随机化决策林分类器用于获得像素分类预测图像(PCPI)。 PCPI分析执行零件识别和装配监控。调查结果 - 投影图像随着人体的观点而改变,因此操作者始终从不同的视点察觉到三维引导场景,从而改善人机交互。通过比较PCPI来实现部分识别和装配监测,其中丢失和错误的组装可以在线检测到。原创性/值 - 本文设计了PBAR同时监控和引导组装过程,具有大规模定制生产中的潜在应用。基于像素分类的部件识别和组装监控提供了一种组装监控的新方法。

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