蚁群算法在MIMO系统中的PID控制及其在鸡舍系统中的应用

Lahlouh Ilyas, E. Ahmed, S. Nacer
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引用次数: 8

摘要

鸡舍的主要用途是改善鸟类生长的环境条件。畜舍内温度对鸡的影响最大。通常,它与其他气候参数(如湿度、NH3和CO2)相互作用。本文提出了一种利用优化比例-积分-导数(PID)控制器控制鸡舍内温度的新方法。其主要技术是针对多输入多输出(MIMO)系统,通过自适应静态输出反馈(SOF)控制实现输出矩阵的集合。通过PID控制器对生成的单个鸡舍过程模型进行调节。此外,采用蚁群算法推导出检验综合平方误差(ISE)、综合绝对误差(IAE)、综合时间绝对误差(ITAE)和综合时间平方误差(ITSE)四个多目标指标的最优参数Kp、Ki、Kd。在高温条件下的仿真结果表明了所提出的技术在跟踪家禽舍过程所需设定点方面的良好性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PID Controller of a MIMO system using Ant Colony Algorithm and its application to a poultry house system
Poultry house are used for the main purpose of enhancing the environmental conditions in which birds are grown. The temperature inside livestock building is the most influential factor on the chickens. Commonly, it has been mutually interacted with others climatic parameters such as humidity, NH3 and CO2. This paper proposes a new ways to control the temperature inside poultry house using an optimized proportional-integrator-derivative (PID) controller. The primary technique focuses on the set of the output matrix via the adaptation of the static output feedback (SOF) control for the multi-inputs multi-output (MIMO) system. The generated single model of the poultry house process is regulated with the PID controller. Additionally, the Ant Colony Algorithm is employed to derive the optimal parameters (Kp, Ki, Kd) on testing the four multi-objective indices: the criterion of Integrated Squared Error (ISE), Integrated Absolute Error (IAE), Integrated Time Absolute Error (ITAE) and Integrated Time Squared Error (ITSE). The simulation results in case of hot conditions shows and demonstrates the good performance of the proposed technique in tracking the desired set point with the poultry house process.
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