首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Optimal frequency scanning range for parameters extraction from Brillouin scattering spectrum
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Optimal frequency scanning range for parameters extraction from Brillouin scattering spectrum

机译:从布里渊散射谱提取参数提取的最佳频率扫描范围

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摘要

To improve the accuracy in temperature and strain measurement based on Brillouin scat. tering, Brillouin scattering spectra with different values of Signal to Noise Ratio (SNR), full width at half maximum (Delta v(B)) and the number of frequencies scanning are numerically generated. The influence of frequency scanning range on the accuracy in parameters extraction is systematically investigated and the optimal frequency scanning ranges in different cases are obtained. The results reveal that the frequency scanning range has a big influence on the accuracy in parameters extraction of Brillouin scattering spectrum. If the number of frequencies scanning remains unchanged, the error initially decreases with increasing frequency scanning range. Once the minimum error is reached, it increases with increasing frequency scanning range. The SNR, Delta v(B) and the number of frequencies scanning have little effect on the optimal frequency scanning range. For the cases with SNR ranging from 10 dB to 40 dB and the other parameters falling within the typical range, the optimal frequency scanning ranges are calculated and presented. The systematical investigations reveal that the frequency scanning range can be set to a value ranging from 1.2 Delta v(B) to 1.6 Delta v(B) within which it has little influence on the parameters extraction accuracy. A distributed fiber sensing system based on Brillouin scattering has been set up and the above results are fully validated by the parameters extraction from the measured Brillouin scattering spectra. (C) 2018 Elsevier GmbH. All rights reserved.
机译:基于布里渊SCAT提高温度和应变测量的准确性。 TERETER,具有不同信号值的布里渊散射光谱与噪声比(SNR),半最大宽度(ΔV(b))和频率扫描的数量进行了数值。频率扫描范围对参数提取精度的影响得到系统地研究,并获得了不同情况下的最佳频率扫描范围。结果表明,频率扫描范围对布里渊散射光谱的参数提取的准确性有很大影响。如果扫描频率次数保持不变,则误差最初随着频率扫描范围的增加而降低。达到最小误差后,随着频率扫描范围的增加而增加。 SNR,Delta V(B)和频率扫描的数量对最佳频率扫描范围几乎没有影响。对于SNR为10 dB至40 dB的情况以及落入典型范围内的其他参数,计算和呈现最佳频率扫描范围。系统调查揭示了频率扫描范围可以设置为从1.2ΔV(b)到1.6 delta v(b)的值,因为它对参数提取精度几乎没有影响。已经建立了一种基于布里渊散射的分布式光纤传感系统,并通过测量的布里渊散射光谱的参数提取完全验证了上述结果。 (c)2018年Elsevier GmbH。版权所有。

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