具有阀栓的液位控制系统的控制器设计:数据驱动方法

Jakkarawut Khamkaew, Krittapas Phannachet, Tanagorn Jennawasin
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引用次数: 0

摘要

提出了一种简单的受阀黏滞影响的液位控制系统控制器设计方法。该方法基于虚拟参考迭代整定(FRIT)技术,可以利用单次实验数据对PID控制器等简单控制器的参数进行整定。在我们的框架中,使用分段线性函数构造了简单的阀门粘滞模型,该模型的逆模型易于获得并用作粘滞补偿器。将该方法应用于具有多种PID控制器的双罐液位系统。通过数值仿真验证了该方法的有效性。
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Controller design for a level control system with valve stiction: A data-driven approach
We propose a simple controller design method for a level control system subject to valve stiction. The proposed method is based on fictitious reference iterative tuning (FRIT) technique which can be adopted to tune parameters of simple controllers such as PID controllers by using a one-shot experimental data. In our framework, a simple model of the valve stiction is constructed using a piecewise-linear function, whose inverse model is easily obtained and used as a stiction compensator. The proposed method is applied to a double-tank liquid level system with several types of PID controllers. Numerical simulation is performed to verify effectiveness of the proposed approach.
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