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Effect of lighting conditions and ground speed on performance of intelligent fertilizer spreader for spot-application in wild blueberry

机译:光照条件和地面速度对野生蓝莓智能施肥机性能的影响

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Wild blueberry fields have a significant proportion of bare spots/weed patches, scattered throughout the field, emphasizing the need for targeted fertilizer applications. The existing prescription map-based variable rate (VR) spreader cannot take account of the presence of small, irregularly shaped bare spots/weed patches during fertilization as only each half of the boom (3.66 m; 6 nozzles) is controlled-not each individual nozzle. The objective of this study was to modify the existing VR spreader for spot-application (SA) of fertilizer only in plant areas. The sensing and control system developed was capable of discriminating bare spots/weeds from plants, and shifting the independent control from 6 nozzles (3.66 m) to each pair of nozzles (1.22 m). The modified VR granular (MVRG) fertilizer spreader was able to use a prescription map and the sensing and control systems simultaneously within a field, to avoid fertilization in variable sized bare spots/weed patches. The performance of the MVRG fertilizer spreader was evaluated under two different lighting conditions and three ground speeds. Twelve bare spots/weed patches and plant areas were randomly selected in the wild blueberry field and weighed sticky collectors were placed to collect clay filler which was used as an analogue of fertilizer. The MVRG fertilizer spreader was operated on SA (application only in plant areas) and uniform (application in plants and bare spots/weed patches) modes alternately and the collectors were collected and re-weighed. Results of this study suggested that the MVRG spreader was capable of detecting plants/bare spots/weeds for SA of fertilizer. Spot application of fertilizer can help to reduce excessive fertilizer usage in bare spots/weeds, which will increase farm profitability.
机译:野蓝莓田中有相当大比例的裸露斑点/杂草散布在整个田野中,强调需要有针对性地施肥。现有的基于处方图的可变速率(VR)撒播机无法考虑施肥过程中是否存在小而形状不规则的裸露斑点/杂草斑块,因为仅对吊杆的每半部分(3.66 m; 6个喷嘴)进行了控制,而不是每个人都受到控制喷嘴。这项研究的目的是修改现有的VR撒布机,使其仅在工厂区域内进行肥料的点施(SA)。开发的传感和控制系统能够区分植物的裸露斑点/杂草,并将独立控制从6个喷嘴(3.66 m)转移到每对喷嘴(1.22 m)。改进的VR颗粒(MVRG)肥料撒播机能够在田间同时使用处方图和传感与控制系统,从而避免在可变大小的裸露斑点/杂草块中施肥。在两种不同的光照条件和三种地面速度下,对MVRG施肥机的性能进行了评估。在野生蓝莓田中随机选择十二个裸露点/杂草斑块和植物区域,并称重粘性收集器,以收集用作肥料类似物的粘土填料。 MVRG施肥机以SA(仅在植物区域施用)和均匀(在植物和裸露斑点/杂草斑块的施用)模式下交替运行,收集收集器并称重。这项研究的结果表明,MVRG撒布机能够检测植物/裸露点/杂草中的肥料SA。局部施用肥料可以帮助减少裸露斑点/杂草中过量的肥料使用,这将增加农场的盈利能力。

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