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Water content virtual sensor for tomatoes in coconut coir substrate for irrigation control design

机译:椰子椰壳基质中番茄含水量虚拟传感器的灌溉控制设计

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The main objective of this work has been the development of a virtual sensor (VS) based on the water balance dynamics of tomato crops in greenhouses, using coconut coir substrate as an example in this case. Such sensors are used to provide a viable and economical alternative to expensive or impractical sensors. The final virtual sensor is the result of combining: crop growth, where the water is distributed in structural and non-structural plant biomass (storage); the substrate, which is considered to be composed of a single layer; and the water loss caused by transpiration and drainage. In this work, two ECH2O-EC-5 sensors (Decagon Devices) were calibrated and then used to determine the substrate water content; and a microlysimeter was installed to continuously sample the water supplied, the drainage, and the crop water loss values. The VS took into account the water supplied, the amount of water in three stores (the substrate, the root, and the aerial part of the crop), the climate, and the water loss. The water dynamic was determined by system identification techniques and by physical virtual sensors, which considered the water balance from a holistic point of view as a sub-model for a customizable interface between crop growth and the plant ecosystem. The influence of both the crop and the climate conditions on the water balance was analysed and the virtual sensors were evaluated giving good final results. (C) 2014 Elsevier B.V. All rights reserved.
机译:这项工作的主要目的是开发一种虚拟传感器(VS),该传感器基于温室番茄温室中水平衡的动态变化,在这种情况下以椰子椰壳为例。这种传感器用于提供昂贵或不实用的传感器的可行且经济的替代方案。最终的虚拟传感器是结合在一起的结果:作物生长,其中水分布在结构性和非结构性植物生物量(存储)中;被认为是由单层组成的衬底;以及由于蒸腾和排水造成的水分流失。在这项工作中,对两个ECH2O-EC-5传感器(Decagon设备)进行了校准,然后用于确定基材的含水量。并安装了微量测微计,以连续采样所供应的水,排水和作物失水值。 VS考虑了供水,三处仓库(作物的基质,根部和地上部分)的水量,气候和水分流失。水动力学由系统识别技术和物理虚拟传感器确定,它们从整体角度将水平衡视为作物生长与植物生态系统之间可自定义界面的子模型。分析了作物和气候条件对水平衡的影响,并对虚拟传感器进行了评估,得出了很好的最终结果。 (C)2014 Elsevier B.V.保留所有权利。

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