Simulation of light propagation in citrus fruit using monte carlo multi-layered (MCML) method
Autor: | Wouter Saeys, Ben Aernouts, Robbe Van Beers, Sun Chanjun |
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Rok vydání: | 2021 |
Předmět: |
Materials science
business.industry Monte Carlo method 04 agricultural and veterinary sciences Albedo Laser 040401 food science Juice vesicles law.invention 03 medical and health sciences 0404 agricultural biotechnology 0302 clinical medicine Optics Light propagation law 030221 ophthalmology & optometry Diffuse reflection business Intensity (heat transfer) Food Science Citrus fruit |
Zdroj: | Journal of Food Engineering. 291:110225 |
ISSN: | 0260-8774 |
DOI: | 10.1016/j.jfoodeng.2020.110225 |
Popis: | The interaction of visible and near-infrared light with citrus tissues is of great importance for the design of new optical sensors for fruit quality inspection. In this study, the light propagation through citrus fruit was simulated using the Monte Carlo multi-layered (MCML) technique based on the bulk optical properties (BOP) of citrus tissues. Comparison of the diffuse reflectance profiles from MCML and from the laser scatter images confirmed the accuracy of the simulations. Simulation results indicated that most of the light was diffusely reflected or absorbed in the flavedo. Only a small fraction around 800 nm was transmitted through the three layers. Flavedo and albedo were found to contribute mostly to the diffuse reflectance spectra at 800 nm and their contributions respectively decreased and increased with source-detector distance. Although the contribution of juice vesicles increased with distance, the maximal diffuse reflectance intensity contributed by juice vesicles was located within 0.56 cm. Based on these results, the combination of the power intensity and the source-detector distance can be optimized to obtain more information about the layer of interest, which lays the foundations for designing new quality detection sensors for citrus fruit. |
Databáze: | OpenAIRE |
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