Robotic Vegetable Production
Author:
Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-89123-7_141-2
Reference31 articles.
1. Atefi A, Ge YF, Pitla S, Schnable J (2021) Robotic technologies for high-throughput plant phenotyping: contemporary reviews and future perspectives. Front Plant Sci 12
2. Bakken M, Moore RJD, From P (2019). End-to-end learning for autonomous crop row-following. In 6th International-Federation-of-Automatic-Control (IFAC) Conference on Sensing, Control and Automation Technologies for Agriculture (AGRICONTROL), Sydney, AUSTRALIA, Elsevier
3. Bergerman M, Billingsley J, Reid J, van Henten E (2016) Robotics in agriculture and forestry. In: Siciliano B, Khatib O (eds) Springer handbook of robotics. Springer, Cham, pp 1463–1492
4. Birrell S, Hughes J, Cai JY, Iida F (2020) A field-tested robotic harvesting system for iceberg lettuce. J Field Robot 37(2):225–245
5. Cubero S, Marco-Noales E, Aleixos N, Barbe S, Blasco J (2020) RobHortic: a field robot to detect pests and diseases in horticultural crops by proximal sensing. Agri Basel 10(7)
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