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首页> 外文期刊>Journal of Modern Optics >Experimental analysis on calibration of instrument broadening in a lidar system with Fabry-Perot etalon
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Experimental analysis on calibration of instrument broadening in a lidar system with Fabry-Perot etalon

机译:法布里-珀罗标准具校准激光雷达系统中仪器加宽的实验分析

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摘要

A Brillouin lidar system based on a Fabry-Perot (F-P) etalon and intensified charge coupled device (ICCD) is widely used in measuring ocean physical properties. In previous signal detecting methods, the resolution of the obtained Brillouin spectrum is the major limitation on measurement accuracy of the Brillouin spectrum. The effect due to the instrument of the F-P etalon is relatively minor and typically neglected. However, because methods for obtaining a high resolution spectrum have greatly improved the spectral resolution, the instrument broadening has become the major error source and should be taken into consideration in the measurement. Instrument broadening is a common topic and has been widely researched. Unfortunately, for applications involving a high resolution spectrum, no detailed study has analyzed the performance of the methods for calibrating the broadening with high resolution experimental data. In this paper, the capability and the time costs of methods for reducing the broadening effect are evaluated for a high resolution spectrum obtained from underwater experiments. We also discuss in detail the implementation of the methods. Experimental results show that the three methods considered can effectively calibrate the broadening effect and improve the measurement accuracy from tens of MHz to MHz magnitude. Considering the similar performance of the methods, one method that is sufficient for online measurement is recommended as the optimal method.
机译:基于法布里-珀罗(F-P)标准具和增强电荷耦合装置(ICCD)的布里渊激光雷达系统被广泛用于测量海洋物理特性。在先前的信号检测方法中,所获得的布里渊光谱的分辨率是对布里渊光谱的测量精度的主要限制。 F-P标准具的作用相对较小,通常可以忽略不计。但是,由于获得高分辨率光谱的方法大大提高了光谱分辨率,因此仪器加宽已成为主要的误差源,在测量中应予以考虑。仪器加宽是一个共同的主题,并已得到广泛研究。不幸的是,对于涉及高分辨率光谱的应用,尚无详细研究分析具有高分辨率实验数据的校准加宽方法的性能。在本文中,针对从水下实验获得的高分辨率光谱,评估了降低加宽效果的方法的能力和时间成本。我们还将详细讨论这些方法的实现。实验结果表明,所考虑的三种方法可以有效地校准加宽效果,并可以将测量精度从数十兆赫兹提高到兆赫兹。考虑到这些方法的相似性能,建议使用一种足以进行在线测量的方法作为最佳方法。

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