首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >METROLOGY ENABLED REFLECTION TRANSFORMATION IMAGING TO RECONSTRUCT LOCAL DETAIL IN MANUFACTURED SURFACES
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METROLOGY ENABLED REFLECTION TRANSFORMATION IMAGING TO RECONSTRUCT LOCAL DETAIL IN MANUFACTURED SURFACES

机译:Metrology使能反射变换成像以重建制造表面中的本地细节

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Understanding the performance of large high performance manufactured structures can require highly accurate dimensional measurement across large volumes with the often conflicting capability to record critical parts of the structure in fine detail. Examples include turbine blades, aircraft wings and off-site manufactured modular structures assembled on-site for city, energy and transport infrastructure. Established large-volume industrial metrology systems such as laser trackers and photogrammetry partially meet the need through the measurement of targets and reflectors, but are limited in capability to record high density local detail needed to capture the finest manufactured features. Whilst large-volume surface sensing is possible with laser radar, photogrammetric pattern projection and contact probing for example, the detail required at a local level typically demands local sensing which generally takes the form of a tracked sensor such as a triangulation laser scanner or hand held touch probe. Local sensing systems face challenges where surfaces have fine detail of similar magnitude to the local sensing system sampling capability and particularly for optical sensors where the light reflected back to the sensor by the surface includes specular reflections compounded by local geometry. This paper investigates how Reflection Transformation Imaging (RTI) with a dome camera and lighting system might be calibrated, characterised and tracked as an alternative technology that is more robust to material surface properties and capable of very fine surface detail capture. Laboratory results demonstrate the capability to characterise and locate the dome to sub-millimetric accuracy within a large-volume tracked space to achieve local surface sampling at the 30 μm × 30 μm level. A method utilising sparse touch probe points to seed conversion of low and high frequency normal maps into a common 3D surface is explored with local agreement with laser tracker surface probe check points to the order of 30 μm.
机译:了解大型高性能制造结构的性能可能需要大量的高度准确的尺寸测量,并且具有经常冲突的能力,可以在细节中记录结构的关键部分。例子包括涡轮机叶片,飞机翼和非现场制造的模块化结构,用于城市,能源和运输基础设施。建立了大量工业计量系统,如激光跟踪器和摄影测量部分通过测量目标和反射器部分地满足需要,而是有限的能力,以记录捕获最精细制造特征所需的高密度本地细节。虽然激光雷达可以进行大容量表面感测,但是,摄影测量图案投影和接触探测例如,局部所需的细节通常要求局部感测,这通常采用诸如三角测量激光扫描仪或手持式传感器的形式触摸探头。局部传感系统面临表面对局部传感系统采样能力的相似幅度细节的挑战,特别是对于通过表面反射回传感器的光传感器,包括通过局部几何形状复合的镜面反射。本文调查了如何校准具有圆顶照相机和照明系统的反射变换成像(RTI),表征和跟踪作为对材料表面特性更鲁棒的替代技术,并且能够非常精细的表面细节捕获。实验室结果证明了在大容量跟踪空间内表征和定位圆顶的能力,以实现30μm×30μm水平的局部表面采样。利用激光跟踪器表面探针检查点为30μm的阶段,探讨了利用稀疏触摸探头的稀疏探针指向普通3D表面的种子转换为公共3D表面的方法。

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