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Improved Quantification of Important Beer Quality Parameters based on Non-linear Calibration Methods applied to FT-MIR Spectra
- Source :
- BIRD: BCAM's Institutional Repository Data, instname
- Publication Year :
- 2016
-
Abstract
- During the production process of beer, it is of utmost importance to guarantee a high consistency of the beer quality. For instance, the bitterness is an essential quality parameter which has to be controlled within the specifications at the beginning of the production process in the unfermented beer (wort) as well as in final products such as beer and beer mix beverages. Nowadays, analytical techniques for quality control in beer production are mainly based on manual supervision, i.e., samples are taken from the process and analyzed in the laboratory. This typically requires significant lab technicians efforts for only a small fraction of samples to be analyzed, which leads to significant costs for beer breweries and companies. Fourier transform mid-infrared (FT-MIR) spectroscopy was used in combination with nonlinear multivariate calibration techniques to overcome (i) the time consuming off-line analyses in beer production and (ii) already known limitations of standard linear chemometric methods, like partial least squares (PLS), for important quality parameters Speers et al. (J I Brewing. 2003;109(3):229-235), Zhang et al. (J I Brewing. 2012;118(4):361-367) such as bitterness, citric acid, total acids, free amino nitrogen, final attenuation, or foam stability. The calibration models are established with enhanced nonlinear techniques based (i) on a new piece-wise linear version of PLS by employing fuzzy rules for local partitioning the latent variable space and (ii) on extensions of support vector regression variants (𝜖-PLSSVR and ν-PLSSVR), for overcoming high computation times in high-dimensional problems and time-intensive and inappropriate settings of the kernel parameters. Furthermore, we introduce a new model selection scheme based on bagged ensembles in order to improve robustness and thus predictive quality of the final models. The approaches are tested on real-world calibration data sets for wort and beer mix beverages, and successfully compared to linear methods, showing a clear out-performance in most cases and being able to meet the model quality requirements defined by the experts at the beer company. Figure Workflow for calibration of non-Linear model ensembles from FT-MIR spectra in beer production .
- Subjects :
- Calibration (statistics)
02 engineering and technology
01 natural sciences
Biochemistry
Analytical Chemistry
non-linear PLS
Robustness (computer science)
Spectroscopy, Fourier Transform Infrared
Partial least squares regression
0202 electrical engineering, electronic engineering, information engineering
support vector regression variation
Process engineering
flexible fuzzy systems
Mathematics
business.industry
Model selection
010401 analytical chemistry
FT-MIR spectroscopy
Beer
Free amino nitrogen
0104 chemical sciences
Support vector machine
quality control of beer
Kernel (statistics)
bagged model selection
Calibration
Brewing
020201 artificial intelligence & image processing
business
Food Analysis
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- BIRD: BCAM's Institutional Repository Data, instname
- Accession number :
- edsair.doi.dedup.....3df912558960b3ebe4f3341bf1af0d0d