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Design and analysis of a multivariable fractional order controller for a non-minimum phase system

机译:非最小相位系统的多变量分数阶控制器的设计与分析

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摘要

Two control strategies for multivariable processes are proposed that are based on a decentralised and a steady state decoupling approach. The designed controllers are fractional order PIs. The efficiency and robustness of the proposed strategies is tested and validated using a non-minimum phase process. Previous research for the same non-minimum phase process has proven that simple decentralised or decoupling techniques do not yield satisfactorily results and a multivariable IMC controller has been proposed as an alternative solution. The simulation results presented in this paper, as well as the experimental results, show that the proposed fractional order multivariable control strategies ensure an improved closed loop performance and disturbance rejection, as well as increased robustness to modelling uncertainties, as compared to traditional multivariable IMC controllers.
机译:提出了两种基于分散和稳态解耦方法的多变量过程控制策略。设计的控制器是分数阶PI。使用非最小阶段过程来测试和验证所提出策略的效率和鲁棒性。以前对同一非最小相位过程的研究证明,简单的分散或去耦技术不能令人满意地得出结果,并且已提出了多变量IMC控制器作为替代解决方案。本文介绍的仿真结果以及实验结果表明,与传统的多变量IMC控制器相比,提出的分数阶多变量控制策略可确保改善的闭环性能和干扰抑制能力,并提高了建模不确定性的鲁棒性。

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