Tensor Product-based and State Feedback Structures for Level Control of Vertical Three Tank Systems

Elena-Lorena Hedrea, R. Precup, Raul-Cristian Roman, C. Dragos, Alexandra-Iulia Szedlak-Stînean, Ciprian Hedrea
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Abstract

In this paper, the design and validation of 20 Control System (CS) structures for the level control cof Vertical Three Tank Systems (V3TSs) is presented. At first a TP model and four linear models are derived for a V3TS. Next, five CS structures are designed for each model consisting in a Tensor Product (TP) controller and four state feedback controllers tuned using linear matrix inequalities and the parallel distributed compensation technique. Finally, in order to ensure zero steady–state control error, the five CS structures were included in Cascade Control System (CCS) structures with Proportional–Integral–Derivative (PID) controller in the outer control loop. All CS structures were tested in the same experimental scenario and a comparative analysis was also conducted by computing two performance indices, namely the mean square error and the settling time. The experimental results have shown that, unlike the TP-based CS structures, the CCS structures with PID controller in the outer control loop ensure better performance in terms of zero steady–state control error.
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基于张量积和状态反馈的垂直三罐系统液位控制结构
本文介绍了立式三罐系统液位控制的20种控制系统结构的设计与验证。首先,建立了V3TS的TP模型和4个线性模型。接下来,为每个模型设计了五个CS结构,其中包括一个张量积(TP)控制器和四个使用线性矩阵不等式和并行分布式补偿技术进行调谐的状态反馈控制器。最后,为了保证稳态控制误差为零,将这5个CS结构加入到串级控制系统(CCS)结构中,外环采用比例-积分-导数(PID)控制器。所有CS结构在相同的实验场景下进行测试,并通过计算均方误差和沉降时间两项性能指标进行对比分析。实验结果表明,与基于tp的CS结构不同,外控制环中加入PID控制器的CCS结构在稳态控制误差为零方面具有更好的性能。
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