首页> 外文会议>International Congress of Engineering Mechatronics and Automation >Design and simulation of a discrete time controller for regulating temperature in a scale greenhouse
【24h】

Design and simulation of a discrete time controller for regulating temperature in a scale greenhouse

机译:测量温室温度的离散时间控制器的设计与仿真

获取原文

摘要

This paper describes the process of designing a temperature controller working in discrete time, using as manipulated variables: thermal power applied from a heat flow supply, in combination with the variation of outdoor air volume flow. As a preliminary step, a dynamic model was analytically derived to describe the behavior of the temperature as a function of the variables: thermal power and air volume flow. An experimental procedure was performed to determine the particular parameters of the real system. Among others specific thermal power, surface thermal conductivity between the greenhouse cover and the environment, heat dissipation coefficient of the incoming airflow. With the values obtained proceeded to make a simulation of the greenhouse on scale as a representative of a physical system. The proposed controller was designed based on the limitations and operating ranges of the real system variables for manipulating : up to 20 watts for the heater in a volume of 5750 cm3, from 0°C of external temperature up to 12°C. By including the air flow as an input variable the system became nonlinear but designed controller was able to maintain the inner temperature between acceptable range for tested potato plants. At a simulation work, it was added a warm air supply at a higher temperature than the outside one. In addition to heating, warm air was also used to increase temperature. This work is the basis to build a mechanism that will be implemented for temperature control which shall carry out, in a full-scale greenhouse in which the efficiency of the control system will be evaluated to protect a crop against the frost weather phenomenon.
机译:本文介绍了设计在离散时间的温度控制器的过程,使用作为操纵变量:从热流供应施加的热功率,与室外空气流量的变化相结合。作为初步步骤,在分析动态模型衍生,以描述作为变量的函数的温度的行为:热功率和空气量。进行实验程序以确定真实系统的特定参数。其中特定的热功率,温室覆盖与环境之间的表面导热性,传入气流的散热系数。利用所获得的值进行了以体积为代表的规模模拟温室。所提出的控制器根据真实系统变量的限制和操作范围设计,用于操纵最多20瓦的加热器,体积为5750cm 3,从0°C,外部温度高达12°C。通过包括作为输入变量的空气流量,系统成为非线性但是设计的控制器能够在可接受的马铃薯植物之间保持可接受范围之间的内部温度。在仿真工作中,它在比外部更高的温度下加入温暖的空气供应。除了加热外,还用于增加温度。这项工作是构建一个机制的基础,该机制将实施,该机制将在全面的温室中进行,以便对控制系统的效率进行评估以保护作物免受霜冻天气现象。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号