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Differential irrigation scheduling by an automated algorithm of water balance tuned by capacitance-type soil moisture sensors

机译:电容式土壤湿度传感器调谐的自动化算法的差分灌溉调度

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Automated software tools are required to undertake the routine tasks and decision-making involved in scheduling irrigation. A key issue in this topic is how to integrate sensors in the scheduling approach. The objectives of this research were to test, in the context of drip-irrigated orchards: (a) the suitability of FAOs water balance method, locally adjusted by sensors, as the basis for the scheduling algorithm, (b) the suitability of capacitance-type soil moisture sensors, and an approach for their automated interpretation, for providing feedback to the scheduling algorithm, and (c) the performance of these combined approaches in the autonomous scheduling of irrigation in an apple orchard with heterogeneous vigour. The trial consisted of applying for two years the proposed approaches using an experimental web application, IRRIX, which scheduled irrigation of two irrigation sectors, which differed in tree size. The automated system was compared with manual scheduling by a classical water balance and with the actual evapotranspiration determined by a weighing lysimeter located in the same orchard. Results show that the irrigation applied by the automated approach in the sector of larger trees agreed with the ET determined by the lysimeter and, overall, with the scheduling by an experienced irrigator using a classical water balance. Meanwhile, as a result of a different feedback from soil moisture sensors, the same system reduced irrigation in the sector of smaller trees by a similar amount to that expected from the differences between the two sectors in the fraction of photosynthetically active radiation. This study illustrates that the method of water balance complemented with capacitance-type soil moisture sensors provides a sound basis for automated irrigation scheduling in orchards.
机译:需要自动化软件工具来承担调度灌溉所涉及的日常任务和决策。本主题中的一个关键问题是如何在调度方法中集成传感器。本研究的目标是在滴灌果园的背景下进行测试:(a)福索斯水平衡方法的适用性,由传感器本地调整,作为调度算法的基础,(b)电容的适用性 - 型土壤湿度传感器,以及自动解释的方法,用于向调度算法提供反馈,(c)这些组合方法在具有异质活力的苹果园灌溉中的自主调度中的性能。该试验包括申请两年的拟议方法,使用实验网络申请IRRIX,其预定灌溉两种灌溉扇区,这些灌溉扇区不同的树径不同。将自动化系统与古典水平衡的手动调度进行了比较,并且具有位于同一果园的称重型立体计确定的实际蒸散蒸腾。结果表明,较大树木扇区应用灌溉施加的较大树木的欧特与典型计的ET和总体而言,通过经验丰富的灌溉者使用古典水平衡来调度。同时,由于土壤湿度传感器的不同反馈,相同的系统通过类似的量对较小树木的扇区减少了与光合作用辐射的分数之间的相似量相似的相似的量。本研究说明了与电容型土壤湿度传感器相辅相成的水平衡方法为果园中的自动灌溉调度提供了一种声音依据。

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