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Independent Control Spraying System for UAV-Based Precise Variable Sprayer: A Review

期刊

DRONES
卷 6, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/drones6120383

关键词

pesticide; control systems; spraying distribution; water-sensitive paper (WSP); simulations; environmental parameters; nozzle

资金

  1. Rural Development Administration, Republic of Korea [PJ016983]

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This study explores research trends in the application of unmanned aerial vehicle (UAV) variable-rate spraying for precise and adaptable pesticide spraying in agriculture. The use of autonomous control systems and a selection of hardware allows for spraying precision, UAV performance efficacy, and flexibility in meeting plant pesticide requirements. Future research can focus on combining variable-rate spraying with cropland mapping to determine pesticide needs and further enhance spraying precision.
Pesticides are essential for removing plant pests and sustaining good yields on agricultural land. Excessive use has detrimental repercussions, such as the depletion of soil fertility and the proliferation of immune insect species, such as Nilaparvata lunges and Nezara viridula. Unmanned aerial vehicle (UAV) variable-rate spraying offers a precise and adaptable alternative strategy for overcoming these challenges. This study explores research trends in the application of semi-automatic approaches and land-specific platforms for precision spraying. The employment of an autonomous control system, together with a selection of hardware such as microcontrollers, sensors, pumps, and nozzles, yields the performance necessary to accomplish spraying precision, UAV performance efficacy, and flexibility in meeting plant pesticide requirements. This paper discusses the implications of ongoing and developing research. The comparison of hardware, control system approaches, and data acquisition from the parameters of each study is presented to facilitate future research. Future research is incentivized to continue the precision performance of the variable rate development by combining it with cropland mapping to determine the need for pesticides, although strict limits on the amount of spraying make it difficult to achieve the same, even though the quality is very beneficial.

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