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A neural approach for improving the measurement capability of an electronic nose

Academic Article
Publication Date:
2003
abstract:
Electronic noses, instruments for automatic recognition of odours, are typically composed of an array of partially selective sensors, a sampling system, a data acquisition device and a data processing system. For the purpose of evaluating the quality of olive oil, an electronic nose based on an array of conducting polymer sensors capable of discriminating olive oil aromas was developed. The selection of suitable pattern recognition techniques for a particular application can enhance the performance of electronic noses. Therefore, an advanced neural recognition algorithm for improving the measurement capability of the device was designed and implemented. This method combines multivariate statistical analysis and a hierarchical neural-network architecture based on self-organizing maps and error back-propagation. The complete system was tested using samples composed of characteristic olive oil aromatic components in refined olive oil. The results obtained have shown that this approach is effective in grouping aromas into different categories representative of their chemical structure.
Iris type:
01.01 Articolo in rivista
Keywords:
electronic nose; sensors; odour recognition; hierarchical neural networks; olive oil
List of contributors:
Chimenti, Massimo; Domenici, Claudio; DI FRANCESCO, Fabio; Pieri, Gabriele; Salvetti, Ovidio
Authors of the University:
PIERI GABRIELE
Handle:
https://iris.cnr.it/handle/20.500.14243/158818
Full Text:
https://iris.cnr.it//retrieve/handle/20.500.14243/158818/75457/prod_170161-doc_200411.pdf
Published in:
MEASUREMENT SCIENCE & TECHNOLOGY (PRINT)
Journal
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