DocumentCode :
623374
Title :
Evaluation of the firmness measurement of fruit by using a non-contact ultrasonic technique
Author :
Sangdae Lee ; Byoung-Kwan Cho
Author_Institution :
Rural Dev. Adm., Nat. Acad. of Agric. Sci., Suwon, South Korea
fYear :
2013
fDate :
19-21 June 2013
Firstpage :
1331
Lastpage :
1336
Abstract :
In this study, we investigated the feasibility of using a novel non-contact ultrasonic technique to measure fruit firmness. The intensity of the reflected ultrasonic signal that bounces back from the fruit surface is dependent on the firmness of the fruit surface. However, differences in fruit size cause the reflected intensity to change with the distance separating the non-contact ultrasonic transducer and fruit surface. Therefore, it is necessary to eliminate the effect of fruit size on signal intensity to accurately predict fruit firmness when using a reflected ultrasonic signal. In this study, we developed and evaluated distance correction factors, which may reduce the size effects of fruit on the reflected ultrasonic signal. The distance correction factors were proposed using a combination of ultrasonic parameters obtained from the first and second reflected ultrasonic signals in the time and frequency domain. Fruit firmness parameters, such as bioyield strength and apparent elastic modulus, were measured and correlated with the distance corrected non-contact ultrasonic parameters. Multiple linear regression models to predict fruit firmness using ultrasonic parameters were assessed. The results demonstrated the potential utility of the distance corrected non-contact ultrasonic technique for the non-destructive measurement of fruit firmness.
Keywords :
agricultural products; elastic moduli; quality control; regression analysis; ultrasonic materials testing; ultrasonic transducers; yield strength; apparent elastic modulus; bioyield strength; distance correction factors; fruit firmness measurement; fruit size; fruit surface; multiple linear regression models; noncontact ultrasonic technique; noncontact ultrasonic transducer; nondestructive measurement; Acoustics; Biological system modeling; Reflection; Surface waves; Ultrasonic imaging; Ultrasonic transducers; Ultrasonic variables measurement; Firmness; Non-contact ultrasonic; Non-destructive measuremen; fruit quality;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics and Applications (ICIEA), 2013 8th IEEE Conference on
Conference_Location :
Melbourne, VIC
Print_ISBN :
978-1-4673-6320-4
Type :
conf
DOI :
10.1109/ICIEA.2013.6566573
Filename :
6566573
Link To Document :
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