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Modelling Greenhouse Temperature and Humidity Dynamics in Order to Develop an Energy Saving Model-Based Control Strategy

机译:造型温室温度和湿度动力学,以开发节能模型的控制策略

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The greenhouse industry, especially in Northern Europe is confronted with economical, political and social pressure to reduce energy consumption. One of the most important optimization problems in optimal greenhouse production systems is the energy costs and use. The primary purpose of greenhouse ventilation is to prevent excessive rise of temperature and humidity. This is achieved by replacing the hot and humid air of the greenhouse with ambient cooler and dryer air. However, in naturally ventilated greenhouses it is difficult to achieve this target without spoiling energy. The main objective of this paper is to investigate and compare the dynamic responses of both temperature and humidity inside greenhouses to a step input in windows opening (0-100%) and in order to develop a control strategy for efficient natural ventilation for greenhouses. To quantify these dynamic responses, two models were identified based on data obtained from a set of step experiments conducted in greenhouse of the Venlo type in Beitem (Belgium). The models were validated using different data obtained from experiments were conducted in different greenhouse of the same type in Leuven (Belgium).
机译:温室行业,特别是在北欧的北欧面临经济,政治和社会压力,以降低能源消耗。最佳温室生产系统中最重要的优化问题之一是能源成本和使用。温室通风的主要目的是防止温度和湿度过度升高。这是通过用环境冷却器和烘干机的温室的热和潮湿空气来实现。然而,在自然通风的温室中,难以在没有破坏能量的情况下实现这种目标。本文的主要目的是调查和比较温度和湿度内部温室的动态响应,以便在Windows开放(0-100%)中输入的步进输入,并为温室的高效自然通风进行控制策略。为了量化这些动态响应,基于从BeItem(比利时)的温室(比利时)的温室中的一组步实验中获得的数据来鉴定了两种模型。使用从实验获得的不同数据进行验证,在Leuven(比利时)的不同温室中进行了不同的数据。

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