DocumentCode
1601216
Title
Calibrating total acidity of tomato products using GA and Vis/NIR spectroscopy
Author
Yao, Jiansong ; Yang, Haiqing ; He, Yong
Author_Institution
Manage. Bur. of Agric. Machine of Haining, Haining, China
fYear
2009
Firstpage
1697
Lastpage
1700
Abstract
Nondestructive optical methods based on visible and near infrared reflectance spectroscopy(Vis/NIRS) have been used for estimation of physiological properties of batches of fruit and vegetable products. The objective of this study was to evaluate the application of Vis/NIRS in measuring total acidity of tomato. Reflectance spectra in the 360-1050 nm range were scanned on 200 tomato samples which were separated randomly into two groups: 150 for calibration set and other 50 for prediction. In order to examine the capability of using multiple wavelengths for prediction modeling, a genetic algorithm was adopted for the optimal selection of them. Three best wavelengths are 506.04 nm, 667.50 nm, and 837.23 nm. The correlation coefficient of the model built on calibration set is 0.82675, which is better than one created at single wavelength. In prediction set, correlation coefficient of the model reaches 0.89789. These results suggest that Vis/NIRS measurements in effective wavelengths could be used to assess the internal quality of certain tomatoes, which can support further study on the design and implement of measuring meter of internal quality of tomato.
Keywords
agricultural products; calibration; correlation methods; genetic algorithms; infrared spectra; nondestructive testing; quality control; visible spectra; correlation coefficient; fruit products; genetic algorithm; measuring meter; near infrared reflectance spectroscopy; nondestructive optical method; physiological property; tomato product quality; total acidity calibration; vegetable products; visible-NIR spectroscopy; wavelength 360 nm to 1050 nm; Agricultural engineering; Calibration; Food technology; Helium; Infrared spectra; Optical scattering; Predictive models; Reflectivity; Spectroscopy; Wavelength measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Asian Control Conference, 2009. ASCC 2009. 7th
Conference_Location
Hong Kong
Print_ISBN
978-89-956056-2-2
Electronic_ISBN
978-89-956056-9-1
Type
conf
Filename
5276187
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