用空气折射率补偿测量两个波长的光学距离

J. Guillory, D. Truong, J. Wallerand
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引用次数: 1

摘要

我们在实现绝对距离计方面提出了我们的第一个结果,它将为几公里的距离带来定义明确和计量可追溯的测量。其目的是在5公里及更远的距离内实现1毫米的精度。为此,开发的原型机在780纳米和1560纳米两种不同的波长下工作。对于这些波长中的每一个,测量的距离是由由强度调制的激光束在空气中传播的射频载波积累的相位确定的。因此,利用这两个测量值之间的色散关系,可以对空气的折射率进行补偿,即不需要测量空气的温度、压力和CO2含量。本文阐述了双波长绝对测距仪的工作原理,并给出了对每个波长进行空气折射率补偿的初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical distance measurements at two wavelengths with air refractive index compensation
We present our first results in the realization of an absolute distance meter that will bring well-defined and metrologically traceable measurements for distances of several kilometers. The purpose is to achieve an accuracy of 1 mm up to 5 km and beyond. To this end, the developed prototype operates at two different wavelengths, 780 nm and 1560 nm. For each of these wavelengths, the measured distance is determined from the phase accumulated by a radio-frequency carrier propagated in air by a laser beam modulated in intensity. Thus, using the dispersion relation between these two measurements, a compensation of the refractive index of air can be applied, i.e. no measurement of temperature, pressure and CO2 content of the air is required. In this paper, the principle of the two-wavelength absolute distance meter is explained, and preliminary results are presented, for each wavelength and with air refractive index compensation.
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