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Portable non-destructive device for detection of different batches of potatoes

Computers and Electronics in Agriculture. · 1 Oct 2025

Abstract

Near infrared spectroscopy (NIRS) has been widely used as a nondestructive testing technique and plays a crucial role in the quality inspection of agricultural products. However, the variability between different batches of samples hinders the application of commercial NIRS processes. Therefore, model transfer is usually performed on new samples to enhance the generalizability of the device. In this study, a new algorithm was developed based on the slope and bias correction algorithm (SBC) for model transfer between two different batches of samples, using potatoes of different origins as experimental samples for prediction models of potato quality, and based on this algorithm, model transfer between two different batches of samples was successfully implemented in a self-made portable non-destructive potato detection device. The results showed that the device developed based on the new algorithm gives good results for subsamples prediction. In the dry matter model, the correlation coefficient (R), root mean square error (RMSE) and relative standard deviation (RSD) of the new algorithm optimized compared with the traditional SBC algorithm were improved from 0.7843, 1.2080% and 6.59% to 0.8251, 1.1307 and 6.17%, respectively; in the starch model, the new algorithm optimized R, RMSE and RPD improved from 0.7971, 1.0023% and 7.43% to 0.8176, 0.9570% and 7.31%, respectively, compared with the traditional SBC algorithm. The transfer of NIR correction models for the dry matter and starch content of potatoes was basically achieved, which provided technical and theoretical support to enhance the model universality of convenient nondestructive detection devices.

Plant phenotyping relevance

ジャガイモの乾物・デンプン含量という植物器官形質を非破壊NIRで測定する携帯型デバイスと、バッチ間モデル移 transferアルゴリズムを開発・評価しており、表現型取得法が中心である。

abstracta new algorithm was developed based on the slope and bias correction algorithm (SBC) for model transfer between two different batches of samples
abstractbased on this algorithm, model transfer between two different batches of samples was successfully implemented in a self-made portable non-destructive potato detection device
abstractThe transfer of NIR correction models for the dry matter and starch content of potatoes was basically achieved

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