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An Embedded System for Control of HydroponicNutrients

机译:用于控制水质营养素的嵌入式系统

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For the efficiency of a closed hydroponic system used in greenhouses, an automated management system is needed for effectively supplying nutrients and controlling various environmental factors for plants. In this study, a WinCE-based embedded system consisting of an array of ion-selective electrodes (ISEs) and multiple metering pumps was developed to effectively manage concentrations of nutrients in recirculating hydroponic solution. An array of ion-selective electrodes (ISEs) based on PVC membraneswas fabricated to measure the concentrations of NO3; K+, and Ca2+ ions in recirculating hydroponic solution. A fertilizer dosing algorithm was developed to calculate the volumes of nutrient stock solutions to be supplied based on a comparison between thepreset and present concentrations of the three different nutrients. Prior to the cultivation of Kale crop, a stepwise spiking test was conducted using the developed embedded system programmed based on the dosing algorithm to see if the system could formulate different concentrations of the three different nutrients as desired. The results showed that there were highly linear relationships between the target concentrations and the prepared concentrations (coefficients of determinations >0.9). However, studies on the decreased concentrations of Ca ions prepared as compared to the target concentrations were needed.
机译:为了在温室中使用的封闭水培系统的效率,需要自动化管理系统来有效地提供营养,并控制植物的各种环境因素。在该研究中,开发了一种由离子选择性电极阵列和多个计量泵组成的基于WinCE的嵌入式系统,以有效地管理再循环水培溶液中的营养浓度。基于制造PVC膜的离子选择性电极(ISE)阵列以测量NO3的浓度; k +,Ca2 +离子在再循环水培溶液中。开发了一种肥料计量算法,以计算基于三种不同营养素的假期和目前浓度的比较来计算待提供的营养储备溶液的体积。在培养羽衣甘蓝作物之前,使用基于计量算法编程的开发的嵌入式系统进行逐步尖峰测试,以了解系统是否可以根据需要制备三种不同营养素的不同浓度。结果表明,目标浓度与制备浓度之间存在高度线性关系(测定系数> 0.9)。然而,需要对与靶浓度相比制备的Ca离子浓度降低的研究。

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