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Fusion of Near-Infrared and Raman Spectroscopy for In-Line Measurement of Component Content of Molten Polymer Blends

机译:近红外和拉曼光谱融合,用于熔融聚合物共混物的组分含量的在线测量

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摘要

Spectral measurement techniques, such as the near-infrared (NIR) and Raman spectroscopy, have been intensively researched. Nevertheless, even today, these techniques are still sparsely applied in industry due to their unpredictable and unstable measurements. This paper put forward two data fusion strategies (low-level and mid-level fusion) for combining the NIR and Raman spectra to generate fusion spectra or fusion characteristics in order to improve the in-line measurement precision of component content of molten polymer blends. Subsequently, the fusion value was applied to modeling. For evaluating the response of different models to data fusion strategy, partial least squares (PLS) regression, artificial neural network (ANN), and extreme learning machine (ELM) were applied to the modeling of four kinds of spectral data (NIR, Raman, low-level fused data, and mid-level fused data). A system simultaneously acquiring in-line NIR and Raman spectra was built, and the polypropylene/polystyrene (PP/PS) blends, which had different grades and covered different compounding percentages of PP, were prepared for use as a case study. The results show that data fusion strategies improve the ANN and ELM model. In particular, mid-level fusion enables the in-line measurement of component content of molten polymer blends to become more accurate and robust.
机译:光谱测量技术(例如近红外(NIR)和拉曼光谱都被密集地研究。然而,即使在今天,由于其不可预测和不稳定的测量,这些技术仍然在工业中略微涂抹。本文提出了两个数据融合策略(低级和中级融合),用于组合NIR和拉曼光谱,以产生融合光谱或融合特性,以提高熔融聚合物共混物的组分含量的直接测量精度。随后,将融合值应用于建模。为了评估不同模型对数据融合策略的响应,将部分最小二乘(PLS)回归,人工神经网络(ANN)和极端学习机(ELM)应用于四种光谱数据的建模(NIR,拉曼,低级融合数据和中级融合数据)。建立了一种同时获取线内NIR和拉曼光谱的系统,制备具有不同等级和覆盖不同的PP的聚丙烯/聚苯乙烯(PP / PS)共混物,以用作案例研究。结果表明,数据融合策略改进了ANN和ELM模型。特别地,中级融合使得熔融聚合物共混物的组分含量的在线测量变得更加准确和稳健。

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