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使用 CFD 和控制技术实现温室温度虚拟传感器的监测

Implementation of Virtual Sensors for Monitoring Temperature in Greenhouses Using CFD and Control.

机构信息

Departamento de Ingeniería Mecatrónica, Universidad Politécnica de Zacatecas, Fresnillo 99080, Mexico.

Centro Universitario de los Valles, Universidad de Guadalajara, Ameca 46600, Mexico.

出版信息

Sensors (Basel). 2018 Dec 24;19(1):60. doi: 10.3390/s19010060.

Abstract

Virtual sensing is crucial in order to provide feasible and economical alternatives when physical measuring instruments are not available. Developing model-based virtual sensors to calculate real-time information at each targeted location is a complex endeavor in terms of sensing technology. This paper proposes a new approach for model-based virtual sensor development using computational fluid dynamics (CFD) and control. Its main objective is to develop a three-dimensional (3D) real-time simulator using virtual sensors to monitor the temperature in a greenhouse. To conduct this study, a small-scale greenhouse was designed, modeled, and fabricated. The controller was based on the convection heat transfer equation under specific assumptions and conditions. To determine the temperature distribution in the greenhouse, a CFD analysis was conducted. Only one well-calibrated and controlled physical sensor (temperature reference) was enough for the CFD analysis. After processing the result that was obtained from the real sensor output, each virtual sensor had learned the associative transfer function that estimated the output from given input data, resulting in a 3D real-time simulator. This study has demonstrated, for the first time, that CFD analysis and a control strategy can be combined to obtain system models for monitoring the temperature in greenhouses. These findings suggest that, generally, virtual sensing can be applied in large greenhouses for monitoring the temperature using a 3D real-time simulator.

摘要

为了在无法使用物理测量仪器时提供可行且经济的替代方案,虚拟传感至关重要。开发基于模型的虚拟传感器以计算每个目标位置的实时信息是传感技术方面的一项复杂任务。本文提出了一种使用计算流体动力学 (CFD) 和控制的基于模型的虚拟传感器开发新方法。其主要目的是使用虚拟传感器开发三维 (3D) 实时模拟器来监测温室中的温度。为了进行这项研究,设计、建模和制造了一个小型温室。控制器基于特定假设和条件下的对流传热方程。为了确定温室中的温度分布,进行了 CFD 分析。仅需一个经过良好校准和控制的物理传感器(温度参考)即可进行 CFD 分析。在处理完从实际传感器输出获得的结果后,每个虚拟传感器都学习了关联传递函数,该函数可根据给定的输入数据估计输出,从而实现了 3D 实时模拟器。本研究首次证明了 CFD 分析和控制策略可以结合使用,以获取用于监测温室温度的系统模型。这些发现表明,通常情况下,虚拟传感可应用于大型温室中,使用 3D 实时模拟器来监测温度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72f9/6339024/15edf81ed1c2/sensors-19-00060-g001.jpg

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