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A novel robust liquid level controller for coupled-tanks systems using artificial hydrocarbon networks

机译:一种新型的坚固的液位控制器,用于使用人工碳氢化合物网络的联罐系统

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摘要

This paper proposes a robust liquid-level controller for coupled-tanks systems when dealing with variable discharge rates at the secondary tank, based on a hybrid fuzzy inference system that uses artificial hydrocarbon networks at the defuzzification step, so-called fuzzy-molecular control. The design methodology of the proposed controller is presented and discussed. In addition, a case study was run over the CE105 TecQuipment coupled-tanks system in order to implement and validate the fuzzy-molecular controller proposed in that work. A comparative evaluation with the proposed controller, a conventional PID controller specifically designed for this system and a QFT robust controller, was done. Also, a performance evaluation in terms of robustness, reference-tracking in a fixed operating point and reference-tracking in a variable operating point on-the-fly was run and analyzed. Results conclude that the proposed fuzzy-molecular controller deals with uncertainty and noise, can handle dynamics in operating point, a model of the plant is not required, and it is easy and simple to implement in comparison with other controllers in literature. To this end, the proposed fuzzy-molecular liquid-level controller inherits characteristics from fuzzy controllers and artificial hydrocarbon networks in order to implement an advanced robust and intelligent control system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文基于混合模糊推理系统(在模糊化步骤中使用人工碳氢化合物网络)提出了一种鲁棒的液位控制器,用于耦合坦克系统在处理副油箱的可变排放量时,该模糊液位控制器称为模糊分子控制。提出并讨论了所提出控制器的设计方法。另外,在CE105 TecQuipment耦合储罐系统上进行了案例研究,以实现和验证该工作中提出的模糊分子控制器。使用建议的控制器,专门为此系统设计的常规PID控制器和QFT鲁棒控制器进行了比较评估。此外,还运行并分析了鲁棒性,固定工作点上的参考跟踪和动态工作点上的参考跟踪方面的性能评估。结果表明,所提出的模糊分子控制器处理不确定性和噪声,可以处理工作点的动态变化,不需要工厂模型,并且与文献中的其他控制器相比,易于实现。为此,所提出的模糊分子液位控制器继承了模糊控制器和人工烃网络的特性,以实现先进的鲁棒智能控制系统。 (C)2015 Elsevier Ltd.保留所有权利。

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