Optimal tracking control of a heat exchanger with change in load condition

T. Katayama, T. Itoh, M. Ogawa, H. Yamamoto
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引用次数: 16

Abstract

An optimal tracking control of a heat exchanger with load change is considered. It is assumed that the plant is described by a discrete-time state-space model with time-delay, and a direct link between input and output. First, based on the linear quadratic inverse technique, the authors derive an optimal tracking controller having integral, state feedback plus preview actions. To derive a state-space model of a heat exchanger, an ARX model was fitted to the open-loop data obtained from the plant. The properties of the tracking control algorithm are analyzed by simulation studies using the identified model. The optimal control algorithm with an observer was installed on a process computer to provide the set points for the analog PID (proportional plus integral plus derivative) regulators of a heat exchanger plant. Experimental studies show that the control performance of water outlet temperature in the presence of load change is greatly improved.<>
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换热器负荷状态变化的最优跟踪控制
研究了负荷变化时换热器的最优跟踪控制问题。假设被控对象用具有时滞的离散状态空间模型来描述,并且在输入和输出之间存在直接联系。首先,基于线性二次逆技术,推导出一种具有积分、状态反馈和预瞄动作的最优跟踪控制器。为了得到热交换器的状态空间模型,将热交换器的开环数据拟合为ARX模型。利用所识别的模型进行仿真研究,分析了跟踪控制算法的性能。将带观测器的最优控制算法安装在过程计算机上,为热交换器装置的模拟PID(比例+积分+导数)调节器提供设定值。实验研究表明,在负荷变化的情况下,出水温度的控制性能得到了很大的提高。
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