Design and performance evaluation of a variable-rate orchard sprayer based on a laser-scanning sensor
Abstract
Keywords: laser-scanning sensor, variable-rate spray, orchard, precision sprayer, pesticide application efficiency
DOI: 10.25165/j.ijabe.20191206.4174
Citation: Cai J C, Wang X, Gao Y Y, Yang S, Zhao C J. Design and performance evaluation of a variable-rate orchard sprayer based on a laser-scanning sensor. Int J Agric & Biol Eng, 2019; 12(6): 51–57.
Keywords
Full Text:
PDFReferences
Llorens J, Gil E, Llop, J, Escolà A. Variable rate dosing in precision viticulture: use of electronic devices to improve application efficiency. Crop Protection, 2010; 29(3): 239–248.
Sun H, Li M Z, Zhang Q, Detection system of smart sprayers: Status, challenges, and perspectives. Int J Agric & Biol Eng, 2012; 5(3): 10–23.
Chen Y, Zhu H, Ozkan H E. Development of variable-rate sprayer with laser scanning sensor to synchronize spray outputs to tree structures.
Transactions of the ASABE, 2012; 55(3): 773–781.
Hassen N S, Sidik N A C, Sheriff J M. Advanced techniques for reducing spray losses in agrochemical application system. Life Sci J, 2014; 11(3): 56–66.
Li M, Chen S, Liu F, Zhao L, Xue Q, Wang H. A risk management system for meteorological disasters of solar greenhouse vegetables. Precision Agriculture, 2017; (3): 1–14.
Gil E, Arnó J, Llorens J, Sanz R, Llop J, Rosell J R, Gallart M, Escola A. Advanced Technologies for the Improvement of Spray Application Techniques in Spanish Viticulture: An Overview. Sensors, 2014; 14(1): 691–708.
Berk P, Hocevar M, Stajnko D, Belsak A. Development of alternative plant protection product application techniques in orchards, based on measurement sensing systems: A review. Computers & Electronics in Agriculture, 2016; 124: 273–288.
Song Y, Sun H, Li M Z, Zhang Q. Technology application of smart spray in agriculture: a review. Intelligent Automation & Soft Computing, 2015; 21(3): 319–333.
Jeon H Y, Zhu H. Development of a variable-rate sprayer for nursery liner applications. Transactions of the ASABE, 2012; 55(1): 303–312.
Wang Y X, Xu S S, Li W B, Kang F, Zheng Y J. Identification and location of grapevine sucker based on information fusion of 2D laser scanner and machine vision. Int J Agric & Biol Eng, 2017; 10(2): 84–93.
M Hočevar, B Širok, V Jejčič, T Godeša, M Lešnika, Stajnko D. Design and testing of an automated system for targeted spraying in orchards. Journal of Plant Diseases & Protection, 2010; 117(2): 71–79.
Chen Y, Ozkan H E, Derksen R C, Krause C R. Spray deposition inside tree canopies from a newly developed variable-rate air-assisted sprayer. Transactions of the ASABE, 2013; 56(6): 1263–1272.
Chen Y, Zhu H, Ozkan H E, Derksen R C, Krause C R. Spray drift and off-target loss reductions with a precision air-assisted sprayer. Transactions of the ASABE, 2013; 56(6): 1273–1281.
Liu H, Zhu H, Shen Y, Chen Y, Ozkan H E. Development of digital flow control system for multi-channel variable-rate sprayers. Transactions of the ASABE, 2014; 57(1): 273–281.
Liu H, Zhu H. Evaluation of a Laser Scanning Sensor in Detection of Complex-Shaped Targets for Variable-Rate Sprayer Development. Transactions of the ASABE, 2016; 59(5): 1181–1192.
Zhu H, Rosetta R, Reding M E, Zondag R H, Ranger C M, Canas L, Fulcher A, Derksen R C, Ozkan H E, Krause C R. Validation of a laser-guided variable-rate sprayer for managing insects in ornamental nurseries. Transactions of the ASABE, 2017; 60(2): 337–345.
Maleki M R, Ramon H, Baerdemaeker J D, Mouazen A M. A study on the time response of a soil sensor-based variable rate granular fertiliser applicator. Biosystems Engineering, 2008; 100(2): 160–166.
Wei X, Dan Z, Sun H, Zhang J. Development of vehicular embedded information processing system for map-based precision farming. Transactions of the CSAE, 2013; 29(6): 142–149. (in Chinese)
Chen M, Shi Y, Wang X, Sun G, Li Y. Design and experiment of variable rate fertilizer applicator based on crop canopy spectral reflectance. Transactions of the CSAM, 2015; 46(5): 26–32. (in Chinese)
Li L L, He X K, Song J L, Wang X N, Jia X M, Liu C H. Design and experiment of automatic profiling orchard sprayer based on variable air volume and flow rate. Transactions of the CSAE, 2017; 33(1): 70–76. (in Chinese)
Sanz R, Rosell J R, Llorens J, Gil E, Planas S. Relationship between tree row LIDAR-volume and leaf area density for fruit orchards and vineyards obtained with a LIDAR 3D Dynamic Measurement System. Agricultural & Forest Meteorology, 2013; 171-172(3): 153–162.
Cai J C, Wang X, Song J, Wang S L, Yang S, Zhao C J. Development of real-time laser-scanning system to detect tree canopy characteristics for variable-rate pesticide application. Int J Agric & Biol Eng, 2017; 10(6): 1–9.
Zaman Q U, Esau T J, Schumann A W, Perciva D C, Chang Y K, Scott M R. Development of prototype automated variable rate sprayer for real-time spot-application of agrochemicals in wild blueberry fields. Computers and Electronics in Agriculture, 2011; 76(2): 175–182.
Cai J C, Wang X, Wang S L, Yang S, Zhao C J. Research on spray delay control of a variable-rate orchard sprayer based on a laser-scanning system. ASABE Annual International Meeting, 2017; Paper No. 1700604.
Shi Y, Wu T C, Cai M L, Wang Y X, Xu W Q. Energy conversion characteristics of a hydropneumatic transformer in a sustainable-energy vehicle. Applied Energy, 2016; 171: 77–85.
Shi, Yan, et al. Power characteristics of a new kind of air‐powered vehicle. International Journal of Energy Research, 2016; 40(8): 1112–1121.
Schumann A W, Zaman Q U. Software for real-time ultrasonic mapping of tree canopy size. Computers and Electronics in Agriculture, 2005; 47: 25–40.
Crop protection equipment-Field measurement of spray distribution in tree and bush crops: ISO/FDIS 225522: 2007.
Shuai R, Yan S, Cai M, Xu W Q. Influence of secretion on airflow dynamics of mechanical ventilated respiratory system. IEEE/ACM Transactions on Computational Biology & Bioinformatics, 2017; PP(99), 1–1.
Shi Y, Cai M. Working characteristics of two kinds of air-driven boosters. Energy Conversion & Management, 2011; 52(12): 3399–3407.
Shi Y, Zhang B, Cai M L, Zhang X D. Numerical simulation of volume-controlled mechanical ventilated respiratory system with 2 different lungs. Int J Numer Method Biomed Eng, 2017; 33(9).
Ren S, Cai M L, Shi Y, Xu W Q, Zhang X D. Influence of bronchial diameter change on the airflow dynamics based on a pressure-controlled ventilation system. International Journal for Numerical Methods in Biomedical Engineering, 2017. DOI: 10.1002/cnm.2929.
Khot L R, Ehsani R, Albrigo G, Larbi P A, Landers A, Campoy J. Air-assisted sprayer adapted for precision horticulture: spray patterns and deposition assessments in small-sized citrus canopies. Biosystems Engineering, 2012; 113(1): 76–85.
Xu G, Chen L P, Zhang R R. An image processing system for evaluation of aerial application quality. International Conference on Intelligent Information Processing, 2016; 53.
Copyright (c) 2019
This work is licensed under a Creative Commons Attribution 4.0 International License.