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Design and experimental realization of a robust decentralized PI controller for a coupled tank system

机译:用于耦合罐系统的鲁棒分流PI控制器的设计与实验实现

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This paper presents design and realization of a robust decentralized PI controller for regulating the level of a coupled tank system. The proposed controller is designed based on a predefined reference transfer function model in which we adopt a frequency matching of actual and reference models. Realization of control algorithms for a multivariable system is often complicated owing to uncertainties in the process dynamics. In this paper, initially a frequency response fitting model reduction technique is adopted to obtain a First Order Plus Dead Time (FOPDT) model of each higher order decoupled subsystem. Further, using the obtained reduced order model, the proposed robust decentralized PI controller is designed. The stability and performance of the proposed controller are verified by considering multiplicative input and output uncertainties. The performance of the proposed robust decentralized controller has been compared with that of a decentralized PI controller. To validate the performance of the proposed control approach, real-time experimentation is pursed on a Feedback Instrument manufactured coupled tank system. (C) 2018 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文介绍了一种用于调节耦合罐系统水平的强大分散PI控制器的设计和实现。所提出的控制器基于预定的参考传输功能模型设计,其中我们采用实际和参考模型的频率匹配。由于过程动态中的不确定性,多变量系统的控制算法的实现通常很复杂。在本文中,最初采用频率响应拟合模型减少技术来获得每个高阶解耦子系统的一阶加死时间(FOPDT)模型。此外,使用所获得的减少的订单模型,设计了所提出的鲁棒分散的PI控制器。通过考虑乘法输入和输出不确定性来验证所提出的控制器的稳定性和性能。建议的稳健分散控制器的性能与分散的PI控制器的性能进行了比较。为了验证所提出的控制方法的性能,在反馈仪器制造耦合罐系统上进行实时实验。 (c)2018 ISA。 elsevier有限公司出版。保留所有权利。

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