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A Brillouin Scattering Spectrum frequency shift extraction based on sparse constrainted cross-correlation iterative model

机译:基于稀疏约束交叉相关迭代模型的布里渊散射光谱频移提取

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The Brillouin Optical Time-domain Analysis technology(BOTDA) is one of the hotspots in the optical fiber sensing field, it can measure temperature and strain information along the fiber based on the linear relationship between temperature, strain and Brillouin frequency shift. This technology has high measurement accuracy and long sensing distance. However, the Brillouin scattering signal in BOTDA is very weak and easily affected by external factors. In order to further improve the measurement accuracy and real-time performance of distributed optical fiber sensing system based on Brillouin scattering, this paper proposes a Brillouin scattering spectrum feature extraction scheme based on sparse constrainted cross-correlation iterative algorithm model. Different from the traditional cross-correlation convolution algorithm, this method changes the frequency distribution of the reference Lorenz signal by constructing a constraint model to improve the extraction precision of the Brillouin gain spectrum. In this paper, a 24.4km BOTDA temperature sensing experiment system is built. The experimental results show that compared with the conventional cross-correlation convolution algorithm and Levenberg -Marquardt Lorenz curve fitting algorithm, the accuracy of the Brillouin frequency shift extraction of this method is increased by about 5MHz, and the error of Brillouin frequency shift extraction can be controlled at lMHz.Besides, the computational complexity of this method is far less than theLevenberg -Marquardt Lorenz curve fitting algorithm. Therefore, the sparse constrainted cross-correlation iterative algorithm proposed in this paper can effectively improve the measurement accuracy and real-time performance of the Brillouin optical sensor system.
机译:布里渊光学时域分析技术(BOTDA)是光纤传感场中的热点之一,它可以根据温度,应变和布里渊频率之间的线性关系来测量沿光纤的温度和应变信息。该技术具有高测量精度和长度感测距离。然而,Botda中的布里渊散射信号非常弱,容易受到外部因素的影响。为了进一步提高基于Brillouin散射的分布式光纤感测系统的测量精度和实时性能,提出了一种基于稀疏约束互相关迭代算法模型的布里渊散射光谱特征提取方案。与传统的互相关卷积算法不同,该方法通过构建约束模型来改变参考Lorenz信号的频率分布,以提高布里渊增益谱的提取精度。本文建立了24.4km僵尸乐园温度传感实验系统。实验结果表明,与传统的互相关卷积算法和Levenberg -Marquardt Lorenz曲线拟合算法相比,这种方法的布里渊频移提取的精度增加了大约5MHz,并且布里渊频移提取的误差可以是在LMHz.besides,该方法的计算复杂性远远低于Thelevenberg -Marquardt Lorenz曲线拟合算法。因此,本文提出的稀疏约束互相关迭代算法可以有效地提高布里渊光学传感器系统的测量精度和实时性能。

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