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Study of femtosecond laser spectrally resolved interferometry distance measurement based on excess fraction method

机译:基于多余分数法的飞秒激光分辨干涉干涉距离测量研究

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Spectrally resolved interferometry (SRI) technology is a high precision laser interferometry technology, whose short non-ambiguity range (NAR) increases the precision requirement of pre-measurement in absolute distance measurement. In order to improve NAR of femtosecond laser SRI, the factors affecting NAR are studied in measurement system, and synthetic NAR method is presented based on excess fraction method to solve this question. A theoretical analysis is implemented and two Fabry-Perot Etalons with different free spectral range are selected to carry out digital simulation experiments. The experiment shows that NAR can be improved using synthetic NAR method and the precision is the same with that of fundamental femtosecond laser SRI.
机译:光谱分辨干涉测量(SRI)技术是一种高精度激光干涉测量技术,其短的非模糊度范围(NAR)增加了绝对距离测量预测的精度要求。为了改善Femtosecond激光SRI的NAR,在测量系统中研究了影响NAR的因素,并且基于过量分数法提出了合成NAR方法来解决这个问题。实施理论分析,选择具有不同自由光谱范围的两个法布里 - 珀罗标准体以进行数字仿真实验。实验表明,使用合成NAR方法可以改善NAR,并且精度与基本的飞秒激光SRI相同。

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