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Evaluation of event-based irrigation system control scheme for tomato crops in greenhouses

机译:基于事件的温室番茄作物灌溉系统控制方案评价

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This work presents a study and evaluation of an event-based predictive control system for a greenhouse irrigation process. The control system objective is to maintain the desired substrate humidity level, keeping the water usage as low as possible. The event-based control scheme uses a crop transpiration model to determine the volume of water required to compensate for the irrigation system and a water content model to trigger the irrigation system events. First, simulation experiments were performed to analyze the behavior of the designed system and to study the water supply dynamics to the substrate and subsequent drainage and evaporation. Secondly, the proposed event-based controller was evaluated in an experimental greenhouse, located in southeast of Spain, in real operation conditions. The resulting control system is able to adapt the actuation rate to the state of the plant providing the efficient way of water consumption. The obtained results show that the application of proposed event-based approach for the greenhouse irrigation system allows to improve the control performance and to reduce the water usage (about 20% of required water for the same performance obtained for commonly used on/off) being an important issue in intensive agriculture. The improved control performance is obtained due to event based approach and the inclusion of information about the plant dynamic response for water supply and transpiration effect.(C) 2016 Elsevier B.V. All rights reserved.
机译:这项工作提出了对温室灌溉过程的基于事件的预测控制系统的研究和评估。控制系统目的是保持所需的基板湿度水平,保持水的使用尽可能低。基于事件的控制方案使用作物蒸腾模型来确定补偿灌溉系统和水含量模型所需的水量,以触发灌溉系统事件。首先,进行仿真实验以分析设计系统的行为,并将供水动力学研究到基材和随后的排水和蒸发。其次,在实际操作条件下,在位于西班牙东南部的实验温室中评估了基于事件的控制器。所得到的控制系统能够使致动率适应植物的状态,提供有效的耗水方式。得到的结果表明,适用于温室灌溉系统的基于事件的方法,允许改善控制性能,并降低水的使用(约20%所需水,以用于常用ON / OFF的相同性能)集约农业的重要问题。由于基于事件的方法,并包含有关供水和蒸腾效应的植物动态响应的信息,获得了改进的控制性能。(c)2016年Elsevier B.V.保留所有权利。

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