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Levenberg-Marquardt algorithm with adaptive Tikhonov regularization for bandwidth correction of spectra

机译:Levenberg-Marquardt算法,具有自适应Tikhonov正规的校正频谱的带宽校正

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摘要

Spectrometers are widely used in many fields. However, the spectrum is distorted due to the bandwidth limitations. This study analyzes the problem of using the least square method for bandwidth correction, introduces the common regularization methods and the existing problems of Tikhonov regularization, and proposes a new bandwidth correction method based on Levenberg-Marquardt algorithm with adaptive Tikhonov regularization. The proposed method was used to optimize spectral parameters. White light-emitting diodes and Raman were used as light sources, and a comparative simulation was conducted. Subsequently, the uncertainty and root mean square error of different regularization parameters were calculated. Results show that the proposed method exhibits satisfactory bandwidth correction effect and small estimation error.
机译:光谱仪广泛应用于许多领域。然而,由于带宽限制,频谱失真。本研究分析了使用最小二乘法进行带宽校正的问题,介绍了常用的正则化方法和Tikhonov正则化存在的问题,提出了一种基于Levenberg-Marquardt算法的自适应Tikhonov正则化带宽校正方法。该方法用于优化光谱参数。以白光发光二极管和拉曼光谱为光源,进行了对比仿真。随后,计算了不同正则化参数的不确定度和均方根误差。结果表明,该方法具有良好的带宽校正效果和较小的估计误差。

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