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Chi-Squared-Based Filters for High-Fidelity Signal-to-Noise Ratio Enhancement of Spectra

机译:基于Chi平方的滤波器可增强光谱的信噪比

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摘要

When reconstructing a measured spectrum to enhance its signal-to-noise ratio (SNR), the objective is to minimize the variance between the smooth reconstructed spectrum and the original measured spectrum, hence to attain an acceptably small χ2 value. The χ2 value thus measures the fidelity of the reconstruction to the original. Smoothness can be conceived as attenuated variation between adjacent points in a spectrum. Thus, a conceptual change in the application of the χ2 function to the difference between adjacent points of the reconstructed spectrum permits its use, in principle, as both a measure of smoothness and a measure of fidelity. We show here that implementations of this concept produce results superior to Savitzky–Golay filters.
机译:在重建测量频谱以提高其信噪比(SNR)时,目标是使平滑重建频谱与原始测量频谱之间的差异最小,从而获得可接受的小χ 2 价值。因此,χ 2 值可衡量重构对原始图像的保真度。可以将平滑度视为频谱中相邻点之间的衰减变化。因此,将χ 2 函数应用于重构频谱的相邻点之间的差的概念上的变化允许原则上将其用作平滑度度量和保真度度量。我们在这里展示了该概念的实现所产生的结果优于Savitzky-Golay滤波器。

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    《Applied Spectroscopy》 |2008年第8期|847-853|共7页
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