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

机译:柑橘机械收获的振动监测以提高水果分离效率

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摘要

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/s2 to a complete process of fruit detachment.
机译:橘子机械收割工艺的引入可有助于提高农场的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的振动传播,以建立建议以达到较高的水果分离效率值,并消除后续手工收获过程的需要。田间试验是用横向牵引机的天篷振动器在四个甜橙商业地上进行的。采收过程中的冠层振动是通过一组三轴加速度传感器测量的,该传感器的数据记录器放置在90个轴承分支上。监测了振动过程,水果产量和分支特性。如果树篱和机械都相互调整,则可以提高果实分离效率。由于内部树冠分支显示了外部分支的加速度振动水平的43%,因此应对树篱进行培训,以利于杆的进入和鼓励外部结实。在拉杆与支管相互作用后,应调整机器以使支管在至少5.8 s的振动时间内振动,并且均方根加速度值为23.9 m / s 2 到完整的水果分离过程。

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