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Automation of irrigation by electronic tensiometry based on the arduino hardware platform

机译:基于Arduino Hardware平台的电子潮汐测量灌溉自动化

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This study developed and evaluated an electronic irrigation system controlled by soil water matric potential. The controller uses tensiometers and pressure transducers as a reading mechanism, integrated with an Arduino microcontroller board that drives the solenoid valves and a 1/3 hp single-phase motor. Four electronic tensiometers were installed in plastic containers filled with 6 kg of Red-Yellow Latosol (RYL) with a clayey texture, and another four in plastic containers filled with 7 kg of Regolitic Neosol (RN) with a sandy texture. Irrigation automation components were activated autonomously at the critical potentials of -20, -25, -30, and -35 kPa for RYL, and -10, -15, -20, and -25 kPa for RN, with a 20% variation tolerance. The entire system is able to monitor and control irrigation based on soil water matric potential. Components were deactivated when the soil water potential reached the field capacity of each soil type. Irrigation automation performance was considered satisfactory, as it kept critical potentials within the pre-established thresholds in both soil types. Automation control was set for matric potentials between -10 kPa and -35 kPa in RYL, and between -5 kPa and -25 kPa in RN.
机译:本研究开发并评估了由土壤水型潜力控制的电子灌溉系统。控制器使用张力计和压力传感器作为读取机构,与arduino微控制器板集成,驱动电磁阀和1/3 HP单相电机。四个电子张力器安装在塑料容器中,塑料容器中装满6千克的红黄色龙醇(Ryl),具有粘土纹理,另一个四个塑料容器中,填充有7 kg resergeratic neosol(RN),具有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有含有砂质的塑料容器。灌溉自动化组分在-20,-25,-30和-35kPa的临界电位上自主激活,Ryl,-10,15%,-20和-25kPa,具有20%的变化耐受性。整个系统能够基于土壤水门潜力监测和控制灌溉。当土壤水势达到每种土壤类型的田间容量时,停用组分。灌溉自动化性能被认为是令人满意的,因为它在土壤类型预先建立的阈值内保持关键潜力。自动化控制在Ryl中为-10kPa和-35kPa之间设定为Matric电位,在-5kPa和-25kPa之间进行RN。

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