3MSP2: Sequential picking planning for multi-fruit congregated tomato harvesting in multi-clusters environment based on multi-views
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Publisher
Elsevier BV
Reference34 articles.
1. Clustered tomato detection and picking point location using machine learning‑aided image analysis for automatic robotic harvesting;Bai;Precis. Agric.,2022
2. Design and evaluation of a modular robotic plum harvesting system utilizing soft components;Brown;J. Field Rob.,2021
3. RRT-based path planning for an intelligent litchi-picking manipulator;Cao;Comput. Electron. Agric.,2019
4. Fujinaga, T., Yasukawa, S., Ishii, K., 2021. Evaluation of Tomato Fruit Harvestability for Robotic Harvesting. 2021 IEEE/SICE International Symposium on System Integration. SII 2021, 35–39. doi: 10.1109/IEEECONF49454.2021.9382603.
5. Robotic harvesting of the occluded fruits with a precise shape and position reconstruction approach;Gong;J. Field Rob.,2022
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