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Rapid determination of pit mud moisture content using hyperspectral imaging

机译:使用高光谱成像快速测定矿坑泥浆含水量

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摘要

Lack of moisture can lead to the aging of pit mud, excessive moisture will make it difficult to maintain its shape or even collapse. Therefore, a rapid and nondestructive detection technology for moisture in pit mud using hyperspectral imaging was firstly investigated. Modeling efficiency of various processing was compared in visible (400–1,000 nm) and near‐infrared (900–1,700 nm) regions, and the optimal model was SNV‐SPA‐SVM in near‐infrared spectroscopy; the and RMSEP of model were .9953 and 0.0029, respectively. Furthermore, the distribution map showed that the moisture in the new cellar was generally lower than that of old, and the moisture distribution of the old pit mud was more even. Moreover, the moisture content of different layers in the same cellar increased from top to bottom. This work provides strong technical support for liquor brewing enterprises to effectively implement online monitoring of pit mud changes and open a new era for the application of hyperspectral imaging technology in the field of liquor solid‐state fermentation.
机译:水分不足会导致矿坑泥土老化,水分过多会使其形状难以维持甚至崩溃。因此,首先研究了使用高光谱成像技术对矿泥中水分进行快速,无损检测的技术。在可见光(400–1,000 nm)和近红外(900–1,700 nm)区域比较了各种处理的建模效率,最佳模型是SNV‐SPA‐SVM在近红外光谱中;模型的RMSEP和RMSEP分别为.9953和0.0029。此外,分布图表明,新酒窖中的水分通常低于旧酒窖,而旧矿坑的水分分布更均匀。而且,同一酒窖中不同层的水分含量从上到下增加。这项工作为白酒酿造企业有效实施矿坑泥浆变化在线监测提供了强有力的技术支持,为高光谱成像技术在白酒固态发酵领域的应用开辟了新纪元。

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