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Drip irrigation using a PLC based adaptive irrigation system

机译:使用基于PLC的自适应灌溉系统进行滴灌

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Most of the water used by man goes to irrigation. A major part of this water is used to irrigate small plots where it is not feasible to implement full-scale Evapotranspiration based irrigation controllers. During the growth season crop water needs do not remain constant and varies depending on the canopy, growth stage and climate conditions such as temperature, wind, relative humidity and solar radiation. Thus, it is necessary to find an economic irrigation controller that can adapt the daily water application to the plant needs. The dramatic development of Programmable Logic Controllers, PLCs, and their rather affordable price has made it possible to use them as stand-alone irrigation controllers. In this paper a PLC is used to adapt the daily irrigation amount to actual ETc, using a Hargreaves-Samani type equation. This equation only requires temperature values to calculate Evapotranspiration. Once the ETc is calculated, then the PLC manages the irrigation according to the characteristics of the field, the irrigation equipment and the growth stage of the crop. First year results are very encouraging and indicate a 12% saving in irrigation water. It was also found that heat flux form the soil can influence canopy temperature.
机译:人类使用的大部分水都用于灌溉。这种水的主要部分用于灌溉小块土地,在这些地方,不能实施基于大规模蒸散的灌溉控制器。在生长季节,作物需水量不会保持恒定,并且会根据树冠,生长期和气候条件(例如温度,风,相对湿度和太阳辐射)而变化。因此,有必要找到一种经济的灌溉控制器,以使日常用水适应工厂的需要。可编程逻辑控制器,PLC的迅猛发展及其价格合理的价格使得将它们用作独立灌溉控制器成为可能。在本文中,使用Hargreaves-Samani型方程,使用PLC使日灌溉量适应实际的ETc。该方程式仅需要温度值即可计算出蒸散量。一旦计算出ETc,则PLC将根据田地的特点,灌溉设备和农作物的生长阶段来管理灌溉。第一年的结果非常令人鼓舞,表明可节水12%。还发现土壤的热通量会影响冠层温度。

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