Wolfberry tree dual-model detection method and orchard target-oriented fertilization system based on photoelectric sensors
Abstract
Keywords: orchard fertilizer, target-oriented fertilization, variable rate fertilization, photoelectric sensor, wolfberry orchard
DOI: 10.25165/j.ijabe.20181104.3614
Citation: Yang S, Zhai C Y, Long J, Zhang B, Li H Z. Wolfberry tree dual-model detection method and orchard target-oriented fertilization system based on photoelectric sensors. Int J Agric & Biol Eng, 2018; 11(4): 65-73.
Keywords
Full Text:
PDFReferences
Kim Y J, Kim H J, Ryu K H, Rhee J Y. Fertiliser application performance of a variable-rate pneumatic granular applicator for rice production. Biosyst Eng, 2008; 100(4): 498–510.
Chattha H S, Zaman Q U, Chang Y K, Read S, Schumann A W, Brewster G R, et al. Variable rate spreader for real-time spot-application of granular fertilizer in wild blueberry. Comput Electron Agric, 2014; 100: 70–78.
Nanni M R, Povh F P, Demattê J A M, Oliveira R B De, Chicati M L, Cezar E. Optimum size in grid soil sampling for variable rate application in site-specific management. Sci Agric, 2011; 68(3): 386–392.
Zhang X, Shi L, Jia X, Seielstad G, Helgason C. Zone mapping application for precision-farming: A decision support tool for variable rate application. Precis Agric, 2010; 11(2): 103–114.
Yuan J, Liu C L, Li Y M, Zeng Q, Zha X F. Gaussian processes based bivariate control parameters optimization of variable-rate granular fertilizer applicator. Comput Electron Agric, 2010; 70(1): 33–41.
Reyes J F, Esquivel W, Cifuentes D, Ortega R. Field testing of an automatic control system for variable rate fertilizer application. Comput Electron Agric, 2015; 113: 260–265.
Back S-W, Yu S-H, Kim Y-J, Chung S-O, Lee K-H. An image-based application rate measurement system for a granular fertilizer applicator. Trans ASABE. American Society of Agricultural and Biological Engineers, 2014; 57(2): 679–687.
Anastassiu H T, Vougioukas S, Fronimos T, Regen C, Petrou L, Zude M, et al. A computational model for path loss in wireless sensor networks in orchard environments. Sensors. Multidisciplinary Digital Publishing Institute, 2014; 14(3): 5118–5135.
Garcia A P, Cappelli N L, Umezu C K. Electrically driven fertilizer applicator controlled by fuzzy logic. Eng Agrícola, 2014; 34(3): 510–22.
Castillo-Ruiz F J, Pérez-Ruiz M, Blanco-Roldán G L, Gil-Ribes J A, Agüera J. Development of a telemetry and Yield-Mapping system of olive harvester. Sensors, 2015; 15(2): 4001–4018.
López-Granados F, Jurado-Expósito M, Álamo S, García-Torres L. Leaf nutrient spatial variability and site-specific fertilization maps within olive (Olea europaea L.) orchards. Eur J Agron, 2004; 21(2): 209–222.
Kweon G, Grift T E. Feed Gate Adaptation of a Spinner Spreader for Uniformity Control. Biosyst Eng, 2006; 95(1): 19–34.
Chan C W, Schueller J K, Miller W M, Whitney J D, Cornell J A. Error sources affecting variable rate application of nitrogen fertilizer. Precis Agric, 2004; 5(6): 601–616.
Alva A K, Mattos D, Quaggio J A. Advances in Nitrogen Fertigation of Citrus. J Crop Improv, 2008; 22(1): 121–146.
Schumann A W. Precise placement and variable rate fertilizer application technologies for horticultural crops. Horttechnology, 2010; 20(1): 34–40.
Teixidó M, Font D, Pallejà T, Tresanchez M, Nogués M, Palacín J. Definition of linear color models in the RGB vector color space to detect red peaches in orchard images taken under natural illumination. Sensors, 2012; 12(6): 7701–7718.
Phattaralerphong J, Sathornkich J, Sinoquet H. A photographic gap fraction method for estimating leaf area of isolated trees: assessment with 3D digitized plants. Tree Physiol, 2006; 26(9): 1123–1136.
Phattaralerphong J, Sinoquet H. A method for 3D reconstruction of tree crown volume from photographs: assessment with 3D-digitized plants. Tree Physiol, 2005; 25(10): 1229–1242.
Zhai C, Wang X, Zhao C, Zou W, Liu D, Mao Y. Orchard tree structure digital test system and its application. Math Comput Model, 2011; 54(3-4): 1145–1150.
Zaman Q U, Schumann A W, Miller W M. Variable rate nitrogen application in Florida citrus based on ultrasonically-sensed tree size. Appl Eng Agric, 2005; 21(3): 331–335.
Zaman Q U, Schumann A W. Performance of an ultrasonic tree volume
measurement system in commercial citrus groves. Precis Agric, 2005; 6(5): 467–80.
Gil E, Escolà A, Rosell J R, Planas S, Val L. Variable rate application of plant protection products in vineyard using ultrasonic sensors. Crop Prot, 2007; 26(8): 1287–1297.
Escolà A, Planas S, Rosell J R, Pomar J, Camp F, Solanelles F, et al. Performance of an ultrasonic ranging sensor in apple tree canopies. Sensors, 2011; 11(3): 2459–2477.
Zhai C, Yang S, Zhang B, Li H, Zhu R. Orchard toward-target variable-rate fertilizer system supporting fault alarming. Transactions of the CSAM, 2015; 46(10): 16–23. (in Chinese)
Paulus S, Eichert T, Goldbach H E, Kuhlmann H. Limits of active laser triangulation as an instrument for high precision plant imaging. Sensors, 2014; 14(2): 2489–2509.
Rosell Polo J R, Sanz R, Llorens J, Arnó J, Escolà A, Ribes-Dasi M, et al. A tractor-mounted scanning LIDAR for the non-destructive measurement of vegetative volume and surface area of tree-row plantations: A comparison with conventional destructive measurements. Biosyst Eng, 2009; 102(2): 128–134.
Osterman A, Godeša T, Hočevar M, Širok B, Stopar M. Real-time positioning algorithm for variable-geometry air-assisted orchard sprayer. Comput Electron Agric, 2013; 98: 175–182.
Escolà A, Rosell-Polo J R, Planas S, Gil E, Pomar J, Camp F, et al. Variable rate sprayer. Part 1 - Orchard prototype: Design, implementation and validation. Comput Electron Agric, 2013; 95: 122–135.
Chen Y, Zhu H, Ozkan H E. Development of a variable-rate sprayer with laser scanning sensor to synchronize spray outputs to tree structures. Transactions of the ASABE, 2012; 55(3): 773–781.
Sanz-Cortiella R, Llorens-Calveras J, Escolà A, Arnó-Satorra J, Ribes-Dasi M, Masip-Vilalta J, et al. Innovative LIDAR 3D dynamic measurement system to estimate fruit-tree leaf area. Sensors, 2011; 11(6): 5769–5791.
Zhai C Y, Zhao C J, Wang X, Liu Y Z, Ge J S, Ma Y B, et al. Design and experiment of young tree target detector. Transactions of the CSAE, 2012; 28(2): 18-22. (in Chinese)
Copyright (c) 2018