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Real-time noise reduction for Moessbauer spectroscopy through online implementation of a modified Kalman filter

机译:通过在线实施改进的卡尔曼滤波器可实时降低Moessbauer光谱的噪声

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摘要

Spectrum-processing software that incorporates a Gaussian smoothing kernel within the statistics of first-order Kalman filtration has been developed to provide cross-channel spectral noise reduction for increased real-time signal-to-noise ratios for Moessbauer spectroscopy. The filter was optimized for the breadth of the Gaussian using the Moessbauer spectrum of natural iron foil, and comparisons among the peak broadening, signal-to-noise ratios, and shifts in the calculated hyperfine parameters are presented. The results of optimization give a maximum improvement in the signal-to-noise ratio of 51.1% over the unfiltered spectrum at a Gaussian breadth of 27 channels, or 2.5% of the total spectrum width. The full-width half-maximum of the spectrum peaks showed an increase of 19.6% at this optimum point, indicating a relatively weak increase in the peak broadening relative to the signal enhancement, leading to an overall increase in the observable signal. Calculations of the hyperfine parameters showed that no statistically significant deviations were introduced from the application of the filter, confirming the utility of this filter for spectroscopy applications.
机译:已经开发出在一阶卡尔曼滤波统计数据中结合了高斯平滑核的频谱处理软件,以提供跨通道频谱降噪功能,从而提高Moessbauer光谱的实时信噪比。使用天然铁箔的Moessbauer谱针对高斯宽度对滤波器进行了优化,并给出了峰展宽,信噪比和计算的超精细参数偏移之间的比较。优化的结果在27个通道的高斯宽度上,相对于未经过滤的频谱,最大信噪比提高了51.1%,占总频谱宽度的2.5%。频谱峰值的全宽半最大值显示在此最佳点处增加了19.6%,这表明相对于信号增强而言,峰展宽的增加相对较弱,从而导致可观察信号的整体增加。超细参数的计算表明,从使用滤镜起没有引入统计上显着的偏差,这证实了该滤镜在光谱学应用中的实用性。

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