Deep Learning-Based Approach for Tomato Classification in Complex Scenes
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Publisher
IACSIT Press
Link
https://www.ijcte.org/vol16/IJCTE-V16N1-1351.pdf
Reference29 articles.
1. [1] G. Gyarmati and T. Mizik, "The present and future of precision agriculture," in Proc. IEEE 15th Int. Conf. Syst. Syst. Ing. (SoSE), 2020, pp. 593-596.
2. [2] Q. Zhu, C. He, R. Lu, F. Mendoza, and H. Cen, "Ripeness evaluation of 'Sun Bright' tomato using optical absorption and scattering properties," Postharvest Biology and Technology, vol. 103, pp. 27-34, 2015.
3. [3] R. G. de Luna, E. P. Dadios, and A. A. Bandala, "Automated image capturing system for deep learning-based tomato plant leaf disease detection and recognition," in Proc. TENCON 2018, 2018 IEEE Region 10 Conference, Jeju, Korea (South), 2018, pp. 1414-1419.
4. [4] C. Hu, X. Liu, Z. Pan, and P. Li, "Automatic detection of single ripe tomato on plant combining faster R-CNN and intuitionistic fuzzy set," IEEE Access, vol. 7, pp. 154683-154696, 2019.
5. doi: 10.1109/ACCESS.2019.2949343
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