Meng Junzhen, Xuan Yabing, Huang Guiping
College of Surveying and Geo-Informatics, North China University of Water Resources and Electric Power, Zhengzhou 450000, China.
Sensors (Basel). 2024 Sep 3;24(17):5728. doi: 10.3390/s24175728.
Faced with measurement conditions such as high-temperature forging, strict prohibition of surface contamination, and toxic environments, using the projection point of an optical target projector (referred to as an "optical projector") as a photogrammetric target has become a necessary method of high-precision industrial photogrammetry. In connection with the current industrial demand, we have analyzed the principles of optical projectors and introduced their optical characteristics and advantages in the field of industrial photogrammetry. On this basis, a series of tests such as brightness, roundness, and so on were conducted to determine the basic properties of the optical projector. A set of performance test methods including inner coincidence accuracy and outer coincidence accuracy were proposed; the tests included industrial photogrammetry system measurement repeatability, surface measurement precision, and a comparison test with laser tracker. The test conditions used optical projection points as the photogrammetry targets. The test results showed that the coordinate measurement repeatability of the industrial photogrammetry system is 0.010 mm, and the surface measurement precision is 0.007 mm under the condition of a single optical projector station, with little difference between the results under the condition of pasting retro-reflective targets. In the process of the comparison test with laser tracker, the image quality of the black measurement object obtained is obviously inferior to other surfaces, so the analysis of the point projector is greatly affected by the color of the measured object and other conditions, which provides a reference for the measurement object and application range of the industrial photogrammetric system based on optical targets. The results demonstrate the applicability and reliability of using the optical projection point of an optical projector as target points for photogrammetry.
面对高温锻造、严格禁止表面污染以及有毒环境等测量条件,将光学靶标投影仪(简称“光学投影仪”)的投影点用作摄影测量靶标已成为高精度工业摄影测量的必要方法。结合当前工业需求,我们分析了光学投影仪的原理,并介绍了其在工业摄影测量领域的光学特性和优势。在此基础上,进行了亮度、圆度等一系列测试以确定光学投影仪的基本性能。提出了一套包括内部重合精度和外部重合精度的性能测试方法;测试内容包括工业摄影测量系统测量重复性、表面测量精度以及与激光跟踪仪的对比测试。测试条件是以光学投影点作为摄影测量靶标。测试结果表明,在单个光学投影仪站的条件下,工业摄影测量系统的坐标测量重复性为0.010毫米,表面测量精度为0.007毫米,粘贴反光靶标的条件下结果差异不大。在与激光跟踪仪的对比测试过程中,所获取黑色测量物体的图像质量明显劣于其他表面,因此点投影仪的分析受测量物体颜色等条件影响较大,这为基于光学靶标的工业摄影测量系统的测量物体及应用范围提供了参考。结果证明了将光学投影仪的光学投影点用作摄影测量靶标点的适用性和可靠性。