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An alternative design approach for Fractional Order Internal Model Controllers for time delay systems
Journal of Advanced Research ( IF 11.4 ) Pub Date : 2021-01-12 , DOI: 10.1016/j.jare.2021.01.004
C I Muresan 1 , I Birs 1, 2, 3 , R De Keyser 2, 3
Affiliation  

Introduction

Fractional Order Internal Model Control (FO-IMC) extends the capabilities of the classical IMC approach into the generalized domain of fractional calculus. When dealing with processes that exhibit time delays, implementation of such controllers in a classical feedback loop requires the approximation of the fractional order terms, as well as of the corresponding time delays.

Objectives

The present study proposes an alternative design procedure of FO-IMC controllers based on a novel approximation method of the process time delay, proving the efficiency of the proposed method and its suitability for time delay systems.

Methods

The generalized IMC control laws are obtained analytically, based on a novel approximation of time delay, the Non-Rational Transfer Function approach.

Results

Several numerical examples are chosen to illustrate the efficiency of the proposed approach. In addition, a vertical take-off and landing unit exhibiting second order plus time delay dynamics is chosen to experimentally validate the proposed control strategy. The obtained results are used to compare the proposed tuning strategy with a popular FO-IMC tuning approach, based on the Taylor series approximation of the time delay.

Conclusion

All the chosen examples, both numerical and experimental ones, validate the proposed method. The overall closed loop results obtained with the proposed approach demonstrate an improved performance compared to the existing method. Ultimately, the purpose of the paper to provide an alternative design strategy that extends the existing FO-IMC control field is reached.



中文翻译:

一种用于时间延迟系统的分数阶内部模型控制器的替代设计方法

介绍

分数阶内部模型控制 (FO-IMC) 将经典 IMC 方法的功能扩展到分数阶微积分的广义领域。在处理表现出时间延迟的过程时,在经典反馈回路中实现此类控制器需要分数阶项以及相应时间延迟的近似值。

目标

本研究提出了一种基于过程时间延迟的新近似方法的 FO-IMC 控制器的替代设计程序,证明了所提出的方法的效率及其对时间延迟系统的适用性。

方法

广义的 IMC 控制法则是基于一种新的时间延迟近似,即非有理传递函数方法,通过分析获得的。

结果

选择了几个数值例子来说明所提出方法的效率。此外,选择显示二阶加时延动力学的垂直起降单元来实验验证所提出的控制策略。基于时间延迟的泰勒级数近似,获得的结果用于将所提出的调谐策略与流行的 FO-IMC 调谐方法进行比较。

结论

所有选择的示例,包括数值示例和实验示例,都验证了所提出的方法。与现有方法相比,使用所提出的方法获得的整体闭环结果表明性能有所提高。最终,本文的目的是提供一种替代设计策略,以扩展现有的 FO-IMC 控制领域。

更新日期:2021-01-12
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