首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >New Raman Spectrometer Using a Digital Micromirror Device and a Photomultiplier Tube Detector for Rapid On-Line Industrial Analysis. Part II: Choice of Analytical Methods
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New Raman Spectrometer Using a Digital Micromirror Device and a Photomultiplier Tube Detector for Rapid On-Line Industrial Analysis. Part II: Choice of Analytical Methods

机译:新型拉曼光谱仪,使用数字微镜设备和光电倍增管检测器进行快速在线工业分析。第二部分:分析方法的选择

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In this paper, the performances of four improved analytical methods (backward stepwise selection of peak intensities, sum of characteristic peaks of a component, moving window partial least squares, and genetic algorithms) using wavelength selection for the analysis of xylene mixtures by Raman spectroscopy are tested for further use on the new "digital micromirror device associated with a photomultiplier tube" Raman spectrometer. It is shown that the errors of prediction using only a few selected points (from 4 to 49 depending on the method) are almost the same as when using the whole spectral range (1050 points). Compared to the last two methods, the "backward stepwise selection of peak intensities" and "sum of characteristic peaks of a component" methods are robust under industrial conditions and appear to be well suited for chemical quantitative analysis with the new Raman spectrometer, which allows the measurements of the total intensity to be made simultaneously for a number of pre-selected frequencies. Results show that the errors of prediction can be near to or even lower than 2percent.
机译:在本文中,使用波长选择通过拉曼光谱法分析二甲苯混合物的四种改进的分析方法(向后逐步选择峰强度,特征峰的总和,移动窗口偏最小二乘法和遗传算法)的性能如下:经测试可在新的“与光电倍增管相连的数字微镜设备”拉曼光谱仪上进一步使用。结果表明,仅使用几个选定点(从4到49,具体取决于方法)的预测误差与使用整个光谱范围(1050个点)时几乎相同。与后两种方法相比,“后向逐步选择峰强度”和“组分特征峰的总和”方法在工业条件下非常可靠,并且似乎非常适合使用新的拉曼光谱仪进行化学定量分析。对于多个预选频率,要同时进行总强度的测量。结果表明,预测误差可以接近甚至低于2%。

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