Employing 2DoF PID controllers to improve greenhouse climate system robustness

E. H. Gurban, G. Andreescu
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引用次数: 4

Abstract

The mathematical models of the greenhouse environment are MIMO systems, characterized by a high coupling, nonlinearity, parameter variation and they are highly influenced by disturbances. This paper uses a well-known greenhouse climate model with measurable external disturbances and a feedback-feedforward linearization, decoupling and disturbance compensations technique. Greenhouse climate model parameters/disturbances, which are susceptible to wrong estimation, are identified, i.e., heat transfer coefficient (UA), shading and leaf area index coefficient (α), and intercepted solar radiant energy (Si). The system response, in the case of nominal model and considering different levels of model uncertainty, are compared. Significant quality indicator degradations for setpoint step responses leads to reconsider the control structure using two degree of freedom (2DoF) PID controllers. Four 2DoF PI/PID tuning technique are compared at nominal condition and under parameter variations showing good performance.
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采用二自由度PID控制器提高温室气候系统的鲁棒性
温室环境的数学模型是多输入多输出(MIMO)系统,具有高耦合、非线性、参数变化和受扰动影响大的特点。本文采用了一个著名的温室气候模型,该模型具有可测量的外部干扰,并采用了前馈-前馈线性化、解耦和干扰补偿技术。确定了温室气候模式参数/干扰,即传热系数(UA)、遮阳和叶面积指数系数(α)和拦截太阳辐射能(Si)。比较了在名义模型情况下和考虑不同模型不确定性水平下的系统响应。设定值阶跃响应的显著质量指标退化导致重新考虑使用二自由度PID控制器的控制结构。对四种2DoF PI/PID整定技术在标称条件和参数变化下的性能进行了比较。
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