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Design improvement of the three-beam detector towards a precise long-range 6-degree of freedom motion sensor system

机译:三光束探测器的设计改进,面向精密的远距离6自由度运动传感器系统

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This paper presents performance enhancement of the three beam detector through design improvement based on the error analysis. The three-beam detector is a novel sensor system that measures six motions (i.e., 3 translations and 3 rotations) of a remote object with high accuracy by implementing three laser distance sensors and a vision sensor. In this paper, finite element analysis and parameter analysis are applied to the three-beam detector to analyze its structural frames and sensor configuration, respectively, in terms of sensing error. By virtue of such a systematic, quantitative error analysis, this research has successfully improved the performance of the three-beam detector and thoroughly validated through field tests that it can detect the 6-degree of freedom motions of a remote target at 30 m with an accuracy of 1.51 mm and 0.18° and precision of 0.38 mm and 0.13°.
机译:本文通过基于误差分析的设计改进,对三光束探测器进行了性能提升。三光束探测器是一种新型传感器系统,通过实现三个激光测距传感器和一个视觉传感器,可以高精度地测量远程物体的六次运动(即 3 次平移和 3 次旋转)。本文将有限元分析和参数分析应用于三光束探测器,分别从感知误差的角度分析其结构框架和传感器配置。通过这种系统的定量误差分析,本研究成功地提高了三光束探测器的性能,并通过现场测试充分验证了三光束探测器在30 m处的6自由度运动,精度为1.51 mm和0.18°,精度为0.38 mm和0.13°。

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