DYNAMICS MODELING AND CONTROL SYSTEM DEFINITION FOR VIBRATION ATTENUATION OF A THIN TITANIUM PLATE WITH MATLAB AND ANSYS

Vibration artefacts that appear at small dimension components are frequently encountered in multiple domains such electronic equipment production, surgical and high precision medical applications, optical applications high quality photo/video equipment. The main objective of this work is to develop...

Full description

Bibliographic Details
Main Authors: Vlad Mihai PANAINTE, Horia BĂLAN
Format: Article
Language:English
Published: Technical University of Cluj-Napoca 2022-12-01
Series:Carpathian Journal of Electrical Engineering
Subjects:
Online Access:http://cee.cunbm.utcluj.ro/wp-content/uploads/CJEE20222.pdf
_version_ 1797809658305445888
author Vlad Mihai PANAINTE
Horia BĂLAN
author_facet Vlad Mihai PANAINTE
Horia BĂLAN
author_sort Vlad Mihai PANAINTE
collection DOAJ
description Vibration artefacts that appear at small dimension components are frequently encountered in multiple domains such electronic equipment production, surgical and high precision medical applications, optical applications high quality photo/video equipment. The main objective of this work is to develop a reduced model that accurately represents the dynamics of a small dimension titanium plate and define a suitable vibration control system. With the aid of powerful engineering software instruments, the mathematical model of the studied object is defined with MATLAB after it was modeled and analyzed with ANSYS (mode shape analysis). The mathematical model is developed based on the eigenvectors and eigenvalues extracted from ANSYS and it is called the state space model which is than transformed into a transfer function for simplicity reasons. The mathematical model is than integrated in Simulink and the vibration velocity is evaluated, followed by the definition of a control system comprised of a piezoelectric actuator and PID controller. The evaluation of the system was performed by applying a step signal at the input of the plant and the velocity response is observed comparatively in three configurations as listed: small dimension plate response, plate and piezoelectric actuator and full plant (titanium plate, actuator and PID controller.
first_indexed 2024-03-13T06:55:58Z
format Article
id doaj.art-813da8b896394869b624f23e1c75de2a
institution Directory Open Access Journal
issn 1843-7583
language English
last_indexed 2024-03-13T06:55:58Z
publishDate 2022-12-01
publisher Technical University of Cluj-Napoca
record_format Article
series Carpathian Journal of Electrical Engineering
spelling doaj.art-813da8b896394869b624f23e1c75de2a2023-06-07T09:54:16ZengTechnical University of Cluj-NapocaCarpathian Journal of Electrical Engineering1843-75832022-12-011613545DYNAMICS MODELING AND CONTROL SYSTEM DEFINITION FOR VIBRATION ATTENUATION OF A THIN TITANIUM PLATE WITH MATLAB AND ANSYSVlad Mihai PANAINTE0Horia BĂLAN1Technical University of Cluj-Napoca, RomaniaTechnical University of Cluj-Napoca, RomaniaVibration artefacts that appear at small dimension components are frequently encountered in multiple domains such electronic equipment production, surgical and high precision medical applications, optical applications high quality photo/video equipment. The main objective of this work is to develop a reduced model that accurately represents the dynamics of a small dimension titanium plate and define a suitable vibration control system. With the aid of powerful engineering software instruments, the mathematical model of the studied object is defined with MATLAB after it was modeled and analyzed with ANSYS (mode shape analysis). The mathematical model is developed based on the eigenvectors and eigenvalues extracted from ANSYS and it is called the state space model which is than transformed into a transfer function for simplicity reasons. The mathematical model is than integrated in Simulink and the vibration velocity is evaluated, followed by the definition of a control system comprised of a piezoelectric actuator and PID controller. The evaluation of the system was performed by applying a step signal at the input of the plant and the velocity response is observed comparatively in three configurations as listed: small dimension plate response, plate and piezoelectric actuator and full plant (titanium plate, actuator and PID controller.http://cee.cunbm.utcluj.ro/wp-content/uploads/CJEE20222.pdfsoftware fault diagnosisfeedbackcontrol systemsproportional control
spellingShingle Vlad Mihai PANAINTE
Horia BĂLAN
DYNAMICS MODELING AND CONTROL SYSTEM DEFINITION FOR VIBRATION ATTENUATION OF A THIN TITANIUM PLATE WITH MATLAB AND ANSYS
Carpathian Journal of Electrical Engineering
software fault diagnosis
feedback
control systems
proportional control
title DYNAMICS MODELING AND CONTROL SYSTEM DEFINITION FOR VIBRATION ATTENUATION OF A THIN TITANIUM PLATE WITH MATLAB AND ANSYS
title_full DYNAMICS MODELING AND CONTROL SYSTEM DEFINITION FOR VIBRATION ATTENUATION OF A THIN TITANIUM PLATE WITH MATLAB AND ANSYS
title_fullStr DYNAMICS MODELING AND CONTROL SYSTEM DEFINITION FOR VIBRATION ATTENUATION OF A THIN TITANIUM PLATE WITH MATLAB AND ANSYS
title_full_unstemmed DYNAMICS MODELING AND CONTROL SYSTEM DEFINITION FOR VIBRATION ATTENUATION OF A THIN TITANIUM PLATE WITH MATLAB AND ANSYS
title_short DYNAMICS MODELING AND CONTROL SYSTEM DEFINITION FOR VIBRATION ATTENUATION OF A THIN TITANIUM PLATE WITH MATLAB AND ANSYS
title_sort dynamics modeling and control system definition for vibration attenuation of a thin titanium plate with matlab and ansys
topic software fault diagnosis
feedback
control systems
proportional control
url http://cee.cunbm.utcluj.ro/wp-content/uploads/CJEE20222.pdf
work_keys_str_mv AT vladmihaipanainte dynamicsmodelingandcontrolsystemdefinitionforvibrationattenuationofathintitaniumplatewithmatlabandansys
AT horiabalan dynamicsmodelingandcontrolsystemdefinitionforvibrationattenuationofathintitaniumplatewithmatlabandansys