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Augmented-reality-assisted workpiece localization in rod-type flexible fixtures

机译:增强现实辅助工件定位在杆型柔性夹具中

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摘要

This study proposes an augmented reality (AR)-assisted workpiece-localization technique for rod-type flexible fixtures used in automotive and aerospace industries, for machining thin-walled components. The machining accuracy of a component depends considerably on the profile error and envelopment condition of the blank workpiece. An AR virtual reference of the component is created in the image space using a pinhole camera with a lens distortion model that visually assists the rough placement of the workpiece at the desired location. The fine workpiece-localization process is formulated as a nonlinear optimization problem to minimize the profile error. The problem is subjected to a point-in-polygon constraint in the image space to guarantee the envelopment requirement. The proposed method is validated using an aircraft body panel. It uses only the measurement data acquired from the upper surface of the panel and the AR reference and is a more flexible and accurate solution than the locating-pin method.
机译:本研究提出了一种用于汽车和航空航天工业中使用的杆型柔性固定装置的增强现实(AR)型工件 - 本地化技术,用于加工薄壁部件。部件的加工精度在空白工件的轮廓误差和包络条件上显着取决于空白工件的包裹状态。在图像空间中使用针孔摄像机在图像空间中创建组件的AR虚拟引用,其具有镜头失真模型,该模型可视地帮助工件在所需位置处的粗略放置。细工件 - 定位过程配制为非线性优化问题,以最小化轮廓误差。该问题在图像空间中进行了一个多边形约束,以保证包络要求。使用飞机车身面板验证所提出的方法。它仅使用从面板的上表面获取的测量数据和AR参考,并且是比定位引脚方法更灵活和准确的解决方案。

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