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光频梳的多脉冲光谱干涉绝对测距理论分析

邢书剑 王芙溶 王翼昭 常孟斐

物理学报2025,Vol.74Issue(7):41-47,7.
物理学报2025,Vol.74Issue(7):41-47,7.DOI:10.7498/aps.74.20250024

光频梳的多脉冲光谱干涉绝对测距理论分析

Theoretical analysis of absolute distance measurement based on multi-pulse spectral interferometry by using optical frequency comb

邢书剑 1王芙溶 1王翼昭 1常孟斐1

作者信息

  • 1. 中国民航大学电子信息与自动化学院,天津 300300
  • 折叠

摘要

Abstract

In industrial sites and outdoor long-distance measurements,the difficulty in accurately measuring and correcting the refractive index of air is a critical factor affecting precise distance measurement.In order to develop a simple,long-range,and high-precision absolute distance measurement technique,in this work an absolute distance measurement method is presented based on multi-pulse spectral interferometry by using an optical frequency comb.This method can dynamically correct the measurement errors introduced by group refractive index fluctuations.Firstly,a mathematical model for multi-pulse spectral interferometry is established.By performing a single Fourier transform on the multi-pulse spectral interference signal,the time delay measured in the pseudo-time domain can be used to simultaneously determine the group refractive index of the measurement path and the measured distance.Secondly,by fine-tuning the repetition frequency and using difference computation,the measurement range can be extended from the non-ambiguity range of traditional spectral interferometry to arbitrary lengths.Finally,extensive numerical simulations and analyses are conducted to validate the performance of the proposed method.The simulation results demonstrate that with a reference distance of 0.1 m,the maximum absolute error in group refractive index measurement is 0.12 × 10-6,and the maximum distance measurement error is 33 nm in a range of 0-200 m.In order to measure the group refractive index in real time under changing atmospheric conditions and compensate for ranging errors caused by changes in air refractive index,even under changing atmospheric conditions,the maximum distance measurement error is 38 nm,ensuring sub-micron-level measurement accuracy over long distances.The research results indicate that this method can be applied to large-scale and high-precision absolute distance measurement.

关键词

光频梳/多脉冲光谱干涉/绝对测距/空气折射率

Key words

optical frequency comb/multi-pulse spectral interferometry/absolute distance measurement/air refractive index

引用本文复制引用

邢书剑,王芙溶,王翼昭,常孟斐..光频梳的多脉冲光谱干涉绝对测距理论分析[J].物理学报,2025,74(7):41-47,7.

基金项目

中央高校基本科研业务费专项资金(批准号:3122019054)资助的课题. Project supported by the Fundamental Research Funds for the Central Universities,China(Grant No.3122019054). (批准号:3122019054)

物理学报

OA北大核心

1000-3290

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