研究目的
To predict the salt content in dried sea cucumber (Beche-de-mer) using hyperspectral imaging system the wavelength range from 400 to 1000 nm.
研究成果
The prediction system of salt content in dried sea cucumber (beche-de-mer) can be proposed as a system measurement fast, nondestructively and environmentally-friendly based on hyperspectral imaging by the spectral range of 400–1000 nm. The PLSR algorithm which used in this research has excellent performance as a prediction model, the salt content measurement model in dried sea cucumber (beche-de-mer) has a correlation coefficient of 0.99 with RMSE of 0.27.
研究不足
The spectral wavelength of reflectance in the range of 400-750 nm is differentiated by spectral intensity, but in the range between 750 and 1000 nm, we cannot see and identify a pattern for the spectrum of the salt content distribution.
1:Experimental Design and Method Selection:
The system uses reflectance mode with a wavelength from 400 to1000 nm. The PLSR algorithm is applied to the prediction system model at full wavelength.
2:Sample Selection and Data Sources:
A total of 192 samples of dried sea cucumbers used in this work, which obtained from four regions (Seribu, island, Pontianak island, Riau island, and Belitung island) Indonesia.
3:List of Experimental Equipment and Materials:
The hardware from the prediction system for measuring salt content is motors to generate, hyperspectral camera system, two 150 W halogen lamps, Teflon tables, and personal computer link.
4:Experimental Procedures and Operational Workflow:
The first step, dried sea cucumber images are acquired for 192 samples of various islands. At the process scanning, the sample is scanned by the line scanning method.
5:Data Analysis Methods:
The PLSR algorithm is used to build a model regression between the hypercube data and the data reference of measurement of dried sea cucumber.
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