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A new third‐order calibration method with application for analysis of four‐way data arrays
Authors:Hai‐Yan Fu  Hai‐Long Wu  Yong‐Jie Yu  Li‐Li Yu  Shu‐Rong Zhang  Jin‐Fang Nie  Shu‐Fang Li  Ru‐Qin Yu
Abstract:A novel third‐order calibration algorithm, alternating weighted residue constraint quadrilinear decomposition (AWRCQLD) based on pseudo‐fully stretched matrix forms of quadrilinear model, was developed for the quantitative analysis of four‐way data arrays. The AWRCQLD algorithm is based on the new scheme that introduces four unique constraint parts to improve the quality of four‐way PARAFAC algorithm. The tested results demonstrated that the AWRCQLD algorithm has the advantage of faster convergence rate and being insensitive to the excess component number adopted in the model compared with four‐way PARAFAC. Moreover, simulated data and real experimental data were analyzed to explore the third‐order advantage over the second‐order counterpart. The results showed that third‐order calibration methods possess third‐order advantages which allow more inherent information to be obtained from four‐way data, so it can improve the resolving and quantitative capability in contrast with second‐order calibration especially in high collinear systems. Copyright © 2011 John Wiley & Sons, Ltd.
Keywords:third‐order calibration  second‐order calibration  AWRCQLD  four‐way PARAFAC  quadrilinear model  four‐way data arrays
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