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柑橘机械采收的振动监测以提高果实分离效率

Vibration Monitoring of the Mechanical Harvesting of Citrus to Improve Fruit Detachment Efficiency.

作者信息

Castro-Garcia Sergio, Aragon-Rodriguez Fernando, Sola-Guirado Rafael R, Serrano Antonio J, Soria-Olivas Emilio, Gil-Ribes Jesús A

机构信息

Department of Rural Engineering, Universidad de Cordoba, 14004 Cordoba, Spain.

IDAL, Intelligent Data Analysis Laboratory, Universidad de Valencia, 46100 Valencia, Spain.

出版信息

Sensors (Basel). 2019 Apr 12;19(8):1760. doi: 10.3390/s19081760.

Abstract

The introduction of a mechanical harvesting process for oranges can contribute to enhancing farm profitability and reducing labour dependency. The objective of this work is to determine the spread of the vibration in citrus tree canopies to establish recommendations to reach high values of fruit detachment efficiency and eliminate the need for subsequent hand-harvesting processes. Field tests were carried out with a lateral tractor-drawn canopy shaker on four commercial plots of sweet oranges. Canopy vibration during the harvesting process was measured with a set of triaxial accelerometer sensors with a datalogger placed on 90 bearing branches. Monitoring of the vibration process, fruit production, and branch properties were analysed. The improvement of fruit detachment efficiency was possible if both the hedge tree and the machinery were mutually adjusted. The hedge should be trained to facilitate access of the rods and to encourage external fructification since the internal canopy branches showed 43% of the acceleration vibration level of the external branches. The machine should be adjusted to vibrate the branches at a vibration time of at least 5.8 s, after the interaction of the rod with the branch, together with a root mean square acceleration value of 23.9 m/s to a complete process of fruit detachment.

摘要

引入橙子机械采摘工艺有助于提高农场盈利能力并减少对劳动力的依赖。这项工作的目的是确定柑橘树冠层中振动的传播情况,以便提出建议,实现高果实脱离效率并消除后续手工采摘工序的必要性。在四个甜橙商业地块上,使用侧向拖拉机牵引的树冠振动器进行了田间试验。在90个承重枝条上放置带有数据记录器的一组三轴加速度计传感器,测量了采摘过程中的树冠振动。对振动过程、果实产量和枝条特性进行了监测分析。如果对绿篱树和机械设备进行相互调整,提高果实脱离效率是可行的。绿篱应进行整形,以便振动杆能够触及,并促进外部结果,因为树冠内部枝条的加速度振动水平仅为外部枝条的43%。在振动杆与枝条相互作用后,机器应调整为以至少5.8秒的振动时间振动枝条,同时均方根加速度值达到23.9米/秒²,以完成果实脱离全过程。

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