Scientific PapersEffect of Number of Latent Variables for Partial Least Square Model Based on Near Infrared Spectroscopy on Models Transfer Performance
李永琪, 洪士军, 黄雯, 张立国, 葛炯, 栾绍嵘, 倪力军. Scientific PapersEffect of Number of Latent Variables for Partial Least Square Model Based on Near Infrared Spectroscopy on Models Transfer Performance[J]. 2020, 39(10): 1231-1238.
李永琪, 洪士军, 黄雯, 张立国, 葛炯, 栾绍嵘, 倪力军. Scientific PapersEffect of Number of Latent Variables for Partial Least Square Model Based on Near Infrared Spectroscopy on Models Transfer Performance[J]. 2020, 39(10): 1231-1238.DOI: doi:10.3969/j.issn.1004-4957.2020.10.008.
Using the calibration model transfer of PLS-NIRs models for predicting contents of moisture
protein
fat and starch in corn
as well as total alkaloids in tobacco leaves as an example
effect of number of latent variables(nLVs) on the transfer errors of the models were investigated in this paper.It was found that the nLVs in PLS-NIRs models for corn and tobacco leaves selected by cumulative contribution rate greater than 99.9% were 1 and 13
respectively.The prediction reproducibilities for the four ingredients in corn between master and slave samples predicted by the PLS-NIRs models with one latent variable all satisfied the requirements of national standards.When the PLS-NIRs model predicting total alkaloids content built on the master with 13 latent variables was transferred to four slaves
mean of relative prediction errors(MRE) of tobacco leaves tested on the four slaves were all lower than 6% after piecewise direct standardization(PDS) correction.While the nLVs in PLS-NIRs models for corn and tobacco leaves determined by leaving one sample in turn as cross validation set or fourth fold cross validation method were 5-10
16 and 19
respectively.The prediction errors for the slave corn samples derived from the models with nLVs greater than 5 were significantly increased and exceeded the allowable error level.Even after being corrected by PDS method
most indices of prediction reproducibility for the four ingredients in corn between master and slave samples given by these models could not satisfy the requirements of national standards.The transfer errors of PLS-NIRs models for total alkaloids in tobacco leaves by selecting nLVs greater than 13 increased with the increase of nLVs
while PDS correction cannot guarantee the MRE for all slave instruments given by these models lower than 6%.Results indicated that selecting nLVs for PLS-NIRs models based on the principle of accumulative contribution rate greater than 99.9% or near to 99.9% could effectively avoid over fitting and improve the transfer performance of the models.