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Three-dimensional measurement method for thickness of LED tape coating based on linear array spectral confocal

机译:基于线性阵列光谱共焦的LED带涂层厚度的三维测量方法

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Traditional measuring equipments and methods cannot satisfy the requirements of micrometer-level accuracy and realtimemeasurement of LED tape coating, the paper proposes a three-dimensional measurement method to compute thethickness of LED tape coating based on linear array spectral confocal. Firstly, the distance data is collected by linear arrayspectral confocal scanning and converted into 3D point cloud data, then the point cloud is materialized and smoothed tomake the 3D object more realistic. Finally, the 3D entity is interacted in the Point Cloud Library to perform manualmeasurement of the tiny parts of the object. The subsequent automatic measurements are used to control the grating rulerfor the specified position moving of measurement based on the previous manual measurement processes and the procedurefile. The experimental results indicate that the accuracy of the proposed measurement method is less than 3um, andautomatic measurement costs the processing time within 2.5s. In addition, the measurement accuracy is as high as 99.9%,which indicates that the proposed method performs a competitive result.
机译:传统的测量设备和方法不能满足微米级精度和实时的要求LED带涂层的测量,本文提出了一种三维测量方法来计算基于线性阵列光谱共焦的LED带涂层的厚度。首先,通过线性阵列收集距离数据光谱共焦扫描并转换为3D点云数据,然后点云进行了实现和平滑到使3D对象更加现实。最后,3D实体在点云库中互动以执行手动测量物体的微小部分。随后的自动测量用于控制光栅尺基于先前的手动测量过程和程序的指定位置移动测量文件。实验结果表明,所提出的测量方法的准确性小于3um,并且自动测量成本2.5s内的处理时间。此外,测量精度高达99.9%,这表明所提出的方法执行竞争结果。

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