Centre for Scientific and Technological Research of Extremadura (CICYTEX), Department of Horticulture, Finca La Orden, Regional Government of Extremadura, Highway A-V, Km 372, 06187 Guadajira, Badajoz, Spain.
Program of Efficient Use of Water in Agriculture, Institute of Agrifood Research and Technology (IRTA), Parc de Gardeny (PCiTAL), Fruitcentre, 25003 Lleida, Spain.
Sensors (Basel). 2020 Apr 29;20(9):2526. doi: 10.3390/s20092526.
Recent technological advances have made possible automated irrigation scheduling using decision-support tools. These tools help farmers to make better decisions in the management of their irrigation system, thus increasing yields while preserving water resources. The aim of this study is to evaluate in a commercial plot an automated irrigation system combined with remote-sensing techniques and soil mapping that allows the establishment of regulated deficit irrigation (RDI) strategies. The study was carried out over 3 years (2015-2017) in a commercial hedgerow olive orchard of the variety 'Arbequina' located in Alvarado (Extremadura, Spain). An apparent electrical conductivity (ECa) map and a normalized difference vegetation index (NDVI) map were generated to characterize the spatial variability of the plot and classify the zones in homogeneous areas. Then, reference points were selected to monitor the different irrigation sectors. In 2015, the plot was irrigated according to the farmer's technical criteria throughout the plot. In 2016 and 2017, two different areas of the plot were irrigated applying an RDI strategy, one under expert supervision and the other automatically. The results show that in a heterogeneous plot the use of new technologies can be useful to establish the ideal location for an automatic irrigation system. Furthermore, automatic irrigation scheduling made it possible to establish an RDI strategy recommended by an expert, resulting in the homogenization of production throughout the plot without the need for human intervention.
最近的技术进步使得使用决策支持工具来实现自动化灌溉调度成为可能。这些工具帮助农民在管理灌溉系统时做出更好的决策,从而在节约水资源的同时提高产量。本研究旨在评估在商业地块中结合遥感技术和土壤制图的自动化灌溉系统,以建立调控亏缺灌溉(RDI)策略。该研究在位于西班牙埃斯特雷马杜拉阿尔瓦拉多(Alvarado)的商业篱架油橄榄果园中进行了 3 年(2015-2017 年)。生成了表观电导率(ECa)图和归一化差异植被指数(NDVI)图,以表征地块的空间变异性并对同质区域进行分类。然后,选择参考点来监测不同的灌溉区域。2015 年,根据农民的技术标准对整个地块进行灌溉。在 2016 年和 2017 年,对地块的两个不同区域应用 RDI 策略进行灌溉,一个在专家监督下,另一个自动进行。结果表明,在异质地块中,使用新技术可以有助于确定自动灌溉系统的理想位置。此外,自动灌溉调度使得能够实施专家推荐的 RDI 策略,从而无需人工干预即可实现整个地块的产量均匀化。