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Nutrient Solution Management System for Smart Farms and Plant Factory

机译:智能农场和厂房营养解决方案管理系统

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We present an automated system for nutrient solution management. Prior arts usually measure only pH and EC of the nutrient solutions for maintenance. When EC drops, they just simply add concentrated nutrient to the horticulture bed. Such approach can maintain the density of nutrient solution but cannot maintain the rates of individual ion particles. To prevent nutrition related disorders, fertilization methods with ion selective electrodes are widely introduced. This trend measures individual ion concentration of nutrient solution to maintain appropriate nutrient composition by supplying only insufficient ions. Many researchers have suggested ISE based automated fertilization systems. However, they failed to control a chemical artifact called ion interference effect, which becomes greater at higher density. Our system measures individual concentration of multiple ions and add only deficient nutrients, while handling the ion interference effect issue. To ensure the performance of ion selective electrodes, the system also performs fully automated 3-point calibration 24 times a day. A machine learning algorithm is applied on the sensory parts to remove ion interference effect which make measurement of complex solution with ISE almost impossible. With automated calibration and signal processing technology, the system robustly and continuously maintains nutrient condition for plants. We suggest applying this system on closed hydroponic systems such as smart farms or plant factory, to reduce water consumption and to provide more appropriate environment for the crops.
机译:我们为营养解决方案管理提供了自动化系统。现有技术通常仅测量营养溶液的pH和EC进行维护。当EC滴剂时,他们只是简单地将浓缩营养物添加到园艺床上。这种方法可以保持营养溶液的密度,但不能保持单个离子颗粒的速率。为防止营养相关疾病,广泛引入具有离子选择性电极的施肥方法。该趋势测量营养溶液的单独离子浓度,通过仅提供不足的离子来保持适当的营养成分。许多研究人员建议基于ISE的自动化施肥系统。然而,它们未能控制称为离子干扰效应的化学伪像,其在更高的密度下变得更大。我们的系统测量多个离子的个体浓度,并仅增加缺乏营养素,同时处理离子干扰效果问题。为了确保离子选择性电极的性能,系统也每天24次全自动3点校准。在感觉部件上施加机器学习算法,以去除离子干扰效果,从而测量具有ISE的复合溶液几乎不可能。通过自动校准和信号处理技术,系统鲁棒地并连续地保持植物的营养状况。我们建议将该系统应用于智能农场或工厂工厂等封闭式水培系统,以降低耗水量,为作物提供更合适的环境。

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