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基于调频连续波激光雷达的长度计量的精度和准确性测试。

Precision and accuracy testing of FMCW ladar-based length metrology.

作者信息

Mateo Ana Baselga, Barber Zeb W

出版信息

Appl Opt. 2015 Jul 1;54(19):6019-24. doi: 10.1364/AO.54.006019.

Abstract

The calibration and traceability of high-resolution frequency modulated continuous wave (FMCW) ladar sources is a requirement for their use in length and volume metrology. We report the calibration of FMCW ladar length measurement systems by use of spectroscopy of molecular frequency references HCN (C-band) or CO (L-band) to calibrate the chirp rate of the FMCW sources. Propagating the stated uncertainties from the molecular calibrations provided by NIST and measurement errors provide an estimated uncertainty of a few ppm for the FMCW system. As a test of this calibration, a displacement measurement interferometer with a laser wavelength close to that of our FMCW system was built to make comparisons of the relative precision and accuracy. The comparisons performed show <10  ppm agreement, which was within the combined estimated uncertainties of the FMCW system and interferometer.

摘要

高分辨率调频连续波(FMCW)激光雷达源的校准和可追溯性是其用于长度和体积计量的必要条件。我们报告了通过使用分子频率参考物HCN(C波段)或CO(L波段)的光谱来校准FMCW源的啁啾率,从而对FMCW激光雷达长度测量系统进行校准。将美国国家标准与技术研究院(NIST)提供的分子校准中的规定不确定度和测量误差进行传播,得出FMCW系统的估计不确定度为百万分之几。作为该校准的一项测试,构建了一台激光波长接近我们FMCW系统的位移测量干涉仪,以比较相对精度和准确度。所进行的比较显示一致性<10 ppm,这在FMCW系统和干涉仪的综合估计不确定度范围内。

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