YANG Ze-hui,WU Jian,LI Rui-dong,HAO Xian-wei,LÜ Xiao-fang,TIAN Yu-nong,ZHANG Zhi-cheng,WU Ling-tong,LI Zheng-ying,XIA Chun-yan,ZHANG Kai,XU Meng-yao,BI Yi-ming,XIA Zi-lin.Study on Near Infrared Spectrum Transfer of Convolutional Bridged Twin Denoising Reduction Autoencoder[J].Journal of Instrumental Analysis,2025,44(03):471-478.
The differences between near infrared(NIR) spectrometers make it challenging to share prediction models across different instruments,limiting the widespread application of this technology. To reduce the difficulty of rebuilding prediction models after spectral shift,this paper proposes a near infrared spectral model transfer method based on a convolutional bridged twin denoising autoencoder(CBSDAE). This method utilizes the encoder of the convolutional denoising autoencoder(CDAE) to extract the hidden features of the spectra and fits a transfer mapping function between the hidden spectral features of the target and source instruments using a convolutional neural network(CNN). Finally,the transferred spectra are reconstructed through the decoder of the CDAE. To validate its effectiveness,evaluations were conducted from two perspectives:NIR spectra of tobacco leaves and chemical component prediction results. The findings show that the spectra from the target instrument closely overlap with those from the source instrument after transfer using the CBSDAE method. Compared with direct standardization(DS),piecewise direct standardization(PDS),spectral subtraction correction(SSC),Shenk’s algorithm,CNN and deep autoencoder,the average relative error in nicotine prediction decreased by 6.42%,5.84%,5.32%,5.24%,4.35% and 4.85%,respectively,after applying the CBSDAE method for spectral transfer. Additionally,the root mean square error of prediction(RMSEP) and correlation coefficient were superior to those of the aforementioned methods. These results indicate that the proposed method is an effective approach for model transfer.
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Chu X L , Chen P , Li J Y , Liu D , Xu Y P . J. Instrum. Anal. (褚小立,陈瀑,李敬岩,刘丹,许育鹏. 分析测试学报), 2020 , 39 ( 10 ): 1181 - 1188 .
Zheng K Y , Shen Y , Zhang W , Zhou C G , Ding F Y , Zhang X , Zhang R J , Shi J Y , Zou X B . Spectrosc . Spectral Anal. (郑开逸,沈烨,张文,周晨光,丁福源,张锡,张柔佳,石吉勇,邹小波. 光谱学与光谱分析), 2022 , 42 ( 12 ): 3783 - 3788 .
Zhou Z K , Li C X , Wang Z , Liu R , Chen W L , Xu K X . Spectrosc . Spectral Anal. (周子堃,李晨曦,王哲,刘蓉,陈文亮,徐可欣. 光谱学与光谱分析), 2020 , 40 ( 11 ): 3562 - 3566 .
Liu C L , Liu H Y , Sun X R , Wu J Z , Yang Y F . Trans . Agric. Mach . (刘翠玲,刘浩言,孙晓荣,吴静珠,杨雨菲. 农业机械学报), 2020 , 51 ( 9 ): 344 - 349 .
Chen Q . Model Transfer Strategy of NIR Analysis for Pulpwood Lignin Based on DS and PDS . Nanjing : Nanjing Forestry University(陈琴. 基于DS与PDS的纸浆材木质素近红外分析模型传递策略研究. 南京:南京林业大学) , 2022 .
Xu Y Y , Wen X Y , Li M G , Zhang T L , Tang H S , Li H . Chin. J. Anal. Chem. (徐艳艳,温晓燕,李茂刚,张天龙,汤宏胜,李华. 分析化学), 2021 , 49 ( 10 ): 1758 - 1765 .
Zhang N H , Zhao L , Wang D , Liu Y , Wang H B , Li B B , Liang Y Y , Guo J W . Tobacco Sci . Technol . (张诺涵,赵乐,王迪,刘雨,王洪波,李蓓蓓,梁友艳,郭军伟. 烟草科技), 2024 , 57 ( 2 ): 18 - 26 .
Xu H R , Li Q Q . Trans . Chin. Soc. Agric. Mach. (徐惠荣,李青青. 农业机械学报), 2017 , 48 ( 9 ): 312 - 317 .
Zhong K J , Bin J , Wang Z G , Du W , Chen Z P . Agric. Technol. (钟科军,宾俊,王志国,杜文,陈增萍. 农业与技术), 2022 , 42 ( 22 ): 10 - 14 .
Liu Z W , Xu L J , Chen X J . Spectrosc . Spectral Anal. (刘贞文,徐玲杰,陈孝敬. 光谱学与光谱分析), 2020 , 40 ( 7 ): 2313 - 2318 .
Liu X P , Qin Y H , Zhang F M , Jiang W , Yin Z J . J . Instrum. Anal .(刘鑫鹏,秦玉华,张凤梅,蒋薇,尹志豇. 分析测试学报), 2022 , 41 ( 11 ): 1621 - 1628 .
Li Y H , Xie M , Yi Y . Appl . Res. Comput . (李阳辉,谢明,易阳. 计算机应用研究), 2017 , 34 ( 2 ): 374 - 377 .
Fan Y C , Luo T J , Zhou C L . J. Xiamen Univ.:Nat . Sci. (范亚超,罗天健,周昌乐. 厦门大学学报:自然科学版), 2018 , 57 ( 6 ): 885 - 889 .
Zhang L Z , Jing L Y , Xu W X , Tan J W . Comb. Mach. Tool Autom. Mach. Technol . 张立智 , 井陆阳 , 徐卫晓 , 谭继文 . 组合机床与自动化加工技术) , 2019 ,( 6 ): 58 - 62 .
Hong S J , Sun M H , Wang Z T , Qiu Z Y . J . Detect. Control (洪淑婕,孙闽红,王之腾,仇兆炀. 探测与控制学报), 2022 , 44 ( 5 ): 83 - 89,96 .
Cai G Q , Hu Y J , Li C P , Ji Y , Wang H L . J . Liaoning Univ. Petrol. Chem. Technol. (蔡广庆,胡益炯,李春澎,纪晔,王弘历. 辽宁石油化工大学学报), 2024 , 44 ( 2 ): 1 - 6 .
Shi W J , Dai C G , Zhao Y , Wang Y , Wang Z J . J . Geomatics Sci. Technol. (史文洁,戴晨光,赵莹,王岩,王志坚. 测绘科学技术学报), 2021 , 38 ( 4 ): 391 - 397 .
Luo J J , Wang B , Zhang X Y , Cai Y Y , Wu H L , Yang B . Comput. Era(罗佳杰 , 王宝 , 张馨嫣 , 蔡耀仪 , 吴浩粼 , 阳波 . 计算机时代) , 2022 ,( 5 ): 1 - 5 .
A Study on the On-line Monitoring of Xuefu Zhuyu Capsules Extraction Process Using Near Infrared Spectroscopy Combined with Multivariate Statistical Process Control Technology
Rapid Prediction of Active Components in Polygonatum kingianum Based on NIRS Quantitative Analysis Model
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