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采用频率扫描干涉测量法并对环境振动进行补偿的、具有微米级测量不确定度和24米量程的绝对距离测量系统。

Absolute distance measurement system with micron-grade measurement uncertainty and 24 m range using frequency scanning interferometry with compensation of environmental vibration.

作者信息

Lu Cheng, Liu Guodong, Liu Bingguo, Chen Fengdong, Gan Yu

出版信息

Opt Express. 2016 Dec 26;24(26):30215-30224. doi: 10.1364/OE.24.030215.

Abstract

We establish a theoretical model of the Doppler effect in absolute distance measurements using frequency scanning interferometry (FSI) and propose a novel FSI absolute distance measurement system. This system incorporates a basic FSI system and a laser Doppler velocimeter (LDV). The LDV results are used to correct for the Doppler effect in the absolute distance measurement signal obtained by the basic FSI system. In the measurement of a target located at 16 m, a measurement resolution of 65.5 μm is obtained, which is close to the theoretical resolution, and a standard deviation of 3.15 μm is obtained. The theoretical measurement uncertainty is 8.6 μm + 0.16 μm/m Rm (k = 2) within a distance range of 1 m to 24 m neglecting the influence of air refractive index, which has been verified with experiments.

摘要

我们建立了使用频率扫描干涉术(FSI)进行绝对距离测量时多普勒效应的理论模型,并提出了一种新型的FSI绝对距离测量系统。该系统包含一个基本的FSI系统和一个激光多普勒测速仪(LDV)。LDV的测量结果用于校正基本FSI系统获得的绝对距离测量信号中的多普勒效应。在对位于16 m处的目标进行测量时,获得了65.5μm的测量分辨率,该分辨率接近理论分辨率,并且获得了3.15μm的标准偏差。在忽略空气折射率影响的情况下,在1 m至24 m的距离范围内,理论测量不确定度为8.6μm + 0.16μm/m Rm(k = 2),这已通过实验得到验证。

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