Design and implementation of a computer vision-guided greenhouse crop diagnostics system
Author:
Publisher
Springer Science and Business Media LLC
Subject
Computer Science Applications,Computer Vision and Pattern Recognition,Hardware and Architecture,Software
Link
http://link.springer.com/content/pdf/10.1007/s00138-015-0670-5.pdf
Reference33 articles.
1. Helmer, T., Ehret, D.L., Bittman, S.: CropAssist, an automated system for direct measurement of greenhouse tomato growth and water use. Comput. Electron. Agric. 48, 198–215 (2005)
2. Fitz-Rodriguez, E., Giacomelli, G.A.: Yield prediction and growth mode characterization of greenhouse tomatoes with Neural Networks and Fuzzy Logic. Trans. ASABE 52(6), 2115–2128 (2009)
3. Kacira, M., Sase, S., Okushima, L., Ling, P.P.: Plant response based sensing and control strategies in sustainable greenhouse production. J. Agric. Meteorol. Japan 61(1), 15–22 (2005)
4. Seginer, I., Elster, R.T., Goodrum, J.W., Rieger, M.W.: Plant wilt detection by computer-vision tracking of leaf tips. Trans. ASAE 35(5), 1563–1567 (1992)
5. Meyer, G.E., Troyer, W.W., Fitzgerald, J.B., Paparozzi, E.T.: Leaf nitrogen analysis of poinsettia (Euphorbia Pulcherrima Will D.) using spectral properties in natural and controlled lighting. Appl. Eng. Agric. 8(5), 715–722 (1992)
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