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Wolfberry tree dual-model detection method and orchard target-oriented fertilization system based on photoelectric sensors

机译:基于光电传感器的枸杞双模式检测方法及果园定向施肥系统

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Orchard target-oriented fertilizing with on-board sensor technology can improve fertilizer efficiency and reduce environmental pollution. Photoelectric sensors are widely used for object detection because of their low cost and fast response time. This paper presents a Wolfberry tree dual-model detection method and the design of an orchard target-oriented variable-rate fertilization system based on photoelectric sensors. The dual-model detection method includes the Trunk Detection Model (TDM) and Canopy Detection Model (CDM), which can be applied for Wolfberry orchards at the green cluster and mature stages, respectively. A target-oriented fertilization system was designed using the dual-model method, and tested in the lab and Chinese Wolfberry orchard. The laboratory test results showed that the average center offset distances on the condition of detecting trunks, continuous canopies, and discontinuous canopies were 4.1 cm, 9.1 cm and 13.1 cm, respectively. The system could ignore the signals from canes when their diameters were less than 16 mm, and also could determine the gaps within a tree when they were less than 21 cm. The orchard test results showed that the system accomplished target-oriented fertilization 95 times for 92 trees at the mature stage. The results indicated that the dual-model detection method could be used for Wolfberry trees or other trees with similar canopy changes at different growth stages.
机译:采用车载传感器技术的果园目标施肥可以提高肥料利用率并减少环境污染。光电传感器由于其低成本和快速响应时间而被广泛用于物体检测。提出了枸杞双模式检测方法和基于光电传感器的果园目标定向变量施肥系统的设计。双模式检测方法包括树干检测模型(TDM)和树冠检测模型(CDM),可分别应用于绿色集群和成熟阶段的枸杞果园。使用双模型方法设计了目标导向施肥系统,并在实验室和枸杞园进行了测试。实验室测试结果表明,在检测树干,连续冠层和不连续冠层的条件下,平均中心偏移距离分别为4.1 cm,9.1 cm和13.1 cm。当直径小于16 mm的甘蔗时,该系统可以忽略来自甘蔗的信号,而当直径小于21 cm的甘蔗中的间隙可以确定。果园试验结果表明,该系统在成年期对92棵树进行了95次目标定向施肥。结果表明,双模式检测方法可用于不同生长阶段的枸杞或其他具有相似冠层变化的树木。

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