Across several branches of sciences, a large number of applications involves data represented as functions and curves, for which functional data analysis can play a central role in solving a variety of problem formulations. With some thecnologies, the obtained data are spectra containing a vast amount of information concerning the composition of a sample: in order to infer the chemical composition of the materials from spectra, functional data analysis offers a valuable mean for characterizing the spectral response through identification of peaks position and intensity. The collection of data from different measurement may exhibit similar peak pattern but display misalignment in their peaks. In general, the multiple alignment is crucial in ...
Copyright © 2013 Ana M. Aguilera et al. This is an open access article distributed under the Creativ...
Author Institution: Department of Chemistry, Michigan state UniversityWhile dispersive infrared spec...
$^{1}$ L. Chen, C. E. Cottrell, and A. G. Marshall, Chemometrics \& Intelligent Lab. Systems 1, 51-5...
We propose a functional data analysis approach for the study of spectroscopy data. The applicative p...
This thesis aims to tackle some common but challenging issues in 1H NMR spectroscopic studies: inves...
FTIR spectroscopy is a measurement technique used to obtain an infrared spectrum of absorption of a ...
Prediction problems from spectra are largely encountered in chemometry. In addition to accurate pred...
This thesis focuses on the investigation and application of functional Data Analysis methodologies t...
In chemometrics, spectral data are typically represented by vectors of features in spite of the fact...
Motivation: The major difficulties relating to mathematical modelling of spectroscopic data are inco...
Preprocessing of chromatographic and spectral data is an important aspect of analytical sciences. In...
Preprocessing of Chromatographic and spectral data is an important aspect of analytical sciences. In...
When applying statistical data analysis techniques to analytical chemical data, all variables must h...
A three-step scheme for resolving severely overlapped component spectra from billnear matrix-formate...
The abundance of functional observations in scientific endeavors has led to a significant developmen...
Copyright © 2013 Ana M. Aguilera et al. This is an open access article distributed under the Creativ...
Author Institution: Department of Chemistry, Michigan state UniversityWhile dispersive infrared spec...
$^{1}$ L. Chen, C. E. Cottrell, and A. G. Marshall, Chemometrics \& Intelligent Lab. Systems 1, 51-5...
We propose a functional data analysis approach for the study of spectroscopy data. The applicative p...
This thesis aims to tackle some common but challenging issues in 1H NMR spectroscopic studies: inves...
FTIR spectroscopy is a measurement technique used to obtain an infrared spectrum of absorption of a ...
Prediction problems from spectra are largely encountered in chemometry. In addition to accurate pred...
This thesis focuses on the investigation and application of functional Data Analysis methodologies t...
In chemometrics, spectral data are typically represented by vectors of features in spite of the fact...
Motivation: The major difficulties relating to mathematical modelling of spectroscopic data are inco...
Preprocessing of chromatographic and spectral data is an important aspect of analytical sciences. In...
Preprocessing of Chromatographic and spectral data is an important aspect of analytical sciences. In...
When applying statistical data analysis techniques to analytical chemical data, all variables must h...
A three-step scheme for resolving severely overlapped component spectra from billnear matrix-formate...
The abundance of functional observations in scientific endeavors has led to a significant developmen...
Copyright © 2013 Ana M. Aguilera et al. This is an open access article distributed under the Creativ...
Author Institution: Department of Chemistry, Michigan state UniversityWhile dispersive infrared spec...
$^{1}$ L. Chen, C. E. Cottrell, and A. G. Marshall, Chemometrics \& Intelligent Lab. Systems 1, 51-5...