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A Novel Approach to Information Fusion for Multicomponent Gas Quantitative Analysis with Fourier Transform Infrared Spectrometer

机译:傅里叶变换红外光谱仪用于多组分气体定量分析的信息融合新方法

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Fourier transform infrared Spectroscopy (FT-IR) has been widely used for multi-component gas analysis in many fields because of its many advantages. In order to improve analysis accuracy, information fusion is sometimes used. In this paper, "PRESS method", an information fusion method used currently for multi-component gas analysis with FT-IR spectrometer, was introduced at first. Then, its logicality in application was analyzed. And a novel information fusion method based on noise level was proposed. Compared with current used approach, noise level of transmittance rather than the testing samples' residual errors was used to determine the models' fusion weights. Finally, several sets of testing samples were analyzed to verify the method proposed here. The analysis results showed that the mean relative error or absolute error of the analysis results obtained with the novel approach were no more than that calculated with "PRESS method". Therefore, the novel fusion method is a well-proven and practical method.
机译:傅立叶变换红外光谱(FT-IR)具有许多优点,因此已在许多领域广泛用于多组分气体分析。为了提高分析精度,有时使用信息融合。在本文中,首先介绍了“压缩法”,这是一种目前用于FT-IR光谱仪进行多组分气体分析的信息融合方法。然后,分析了其在应用中的逻辑性。提出了一种基于噪声水平的信息融合方法。与当前使用的方法相比,透射率的噪声级别而不是测试样本的残留误差被用来确定模型的融合权重。最后,分析了几组测试样本以验证此处提出的方法。分析结果表明,用这种新方法得到的分析结果的平均相对误差或绝对误差不超过用“ PRESS方法”计算出的平均相对误差或绝对误差。因此,新颖的融合方法是一种行之有效的实用方法。

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