Applied Mathematics and Nonlinear Sciences
Journal license

Journal

Applied Mathematics and Nonlinear Sciences


Volume
& Issue

Volume 1, Issue 1


Published
on

May 23, 2016


Pages

273-282


DOI

Article

A Comparison between Integer and Fractional Order PDμ Controllers for Vibration Suppression

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Authors

Isabela R. Birs Affiliation:
Technical University of Cluj-Napoca, Department of Automation, Cluj-Napoca Romania
, Cristina I. Muresan Affiliation:
Technical University of Cluj-Napoca, Department of Automation, Cluj-Napoca Romania
, Silviu Folea Affiliation:
Technical University of Cluj-Napoca, Department of Automation, Cluj-Napoca Romania
and Ovidiu Prodan Affiliation:
Technical University of Cluj-Napoca, Department of Structural Mechanics, Cluj-Napoca Romania


Abstract

Along the years, unwanted vibrations in airplane wings have led to passenger discomfort. In this study, the airplane wing is modeled as a cantilever beam on which active vibration suppression is tested. The paper details the tuning of both integer and fractional order Proportional Derivative type controllers based on constraints imposed in the frequency domain. The controllers are experimentally validated and the results prove once more the superiority of the fractional order control approach.


Keywords

Vibration Suppression, PD controller, Fractional Calculus, Smart Beam, 93C80, 26A33, 58E25


Citation

Birs, I. R., Muresan, C. I., Folea, S., & Prodan, O. (2016). A comparison between integer and fractional order pdμ controllers for vibration suppression. Applied Mathematics and Nonlinear Sciences, 1(1), 273–282. https://doi.org/10.21042/AMNS.2016.1.00022

Published by: Engineering Journals

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