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Switchable Glass Enabled Contextualization for a Cyber-Physical Safe and Interactive Spatial Augmented Reality PCBA Manufacturing Inspection System

机译:可切换玻璃使网络实际安全和交互式空间增强现实PCBA制造检测系统的上下文化

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摘要

Augmented reality (AR) has been demonstrated to improve efficiency by up to thrice the level of traditional methods. Specifically, the adoption of visual AR is performed widely using handheld and head-mount technologies. Despite spatial augmented reality (SAR) addressing several shortcomings of wearable AR, its potential is yet to be fully explored. To date, it enhances the cooperation of users with its wide field of view and supports hands-free mobile operation, yet it has remained a challenge to provide references without relying on restrictive static empty surfaces of the same object or nearby objects for projection. Towards this end, we propose a novel approach that contextualizes projected references in real-time and on demand, onto and through the surface across a wireless network. To demonstrate the effectiveness of the approach, we apply the method to the safe inspection of printed circuit board assembly (PCBA) wirelessly networked to a remote automatic optical inspection (AOI) system. A defect detected and localized by the AOI system is wirelessly remitted to the proposed remote inspection system for prompt guidance to the inspector by augmenting a rectangular bracket and a reference image. The rectangular bracket transmitted through the switchable glass aids defect localization over the PCBA, whereas the image is projected over the opaque cells of the switchable glass to provide reference to a user. The developed system is evaluated in a user study for its robustness, precision and performance. Results indicate that the resulting contextualization from variability in occlusion levels not only positively affect inspection performance but also supersedes the state of the art in user preference. Furthermore, it supports a variety of complex visualization needs including varied sizes, contrast, online or offline tracking, with a simple robust integration requiring no additional calibration for registration.
机译:已经证明了增强现实(AR)以提高效率,以提高传统方法水平。具体地,通过手持式和头部安装技术广泛地进行Visual AR的采用。尽管空间增强现实(SAR)解决了可穿戴的几个可穿戴的AR缺口,但其潜力尚未得到充分探索。迄今为止,它增强了用户的广泛视野,并支持免提移动操作,但它仍然是提供引用的挑战,而无需依赖于相同对象或附近对象的预测对象的限制静态空表面。为此,我们提出了一种新颖的方法,即在实时和需求,通过无线网络上的表面和通过地面进行上下文化预计的参考。为了证明该方法的有效性,我们将该方法应用于安全检查的印刷电路板组件(PCBA)无线网络连接到远程自动光学检测(AOI)系统。通过AOI系统检测和本地化的缺陷无线地汇集到所提出的远程检查系统,以通过增强矩形支架和参考图像来提示对检查员的引导。通过可切换玻璃透射的矩形支架辅助PCBA上的缺陷定位,而图像突出在可切换玻璃的不透明单元上以提供对用户的参考。开发系统在用户学习中评估其鲁棒性,精度和性能。结果表明,从闭塞水平的可变性中产生的上下文化不仅是积极影响检查性能,而且在用户偏好中取代了最先进的技术。此外,它支持各种复杂的可视化需求,包括各种尺寸,对比度,在线或离线跟踪,具有简单的鲁棒集成,不需要额外的注册校准。

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