Control of mechatronic system longitudinal vibrations using capacitive parameter

Research relevance. The area of mechatronic systems use is constantly expanding. Depending on their purposes the control of different modes of motion using appropriate neural networks is needed. The development of new types of actuators and sensors is a vital scientific challenge. The research is ai...

Full description

Bibliographic Details
Main Authors: Aleksandr K. Tomilin, Elena Prokopenko
Format: Article
Language:Russian
Published: Tomsk Polytechnic University 2019-05-01
Series:Известия Томского политехнического университета: Инжиниринг георесурсов
Subjects:
Online Access:http://izvestiya.tpu.ru/archive/article/view/1596
_version_ 1797813300442955776
author Aleksandr K. Tomilin
Elena Prokopenko
author_facet Aleksandr K. Tomilin
Elena Prokopenko
author_sort Aleksandr K. Tomilin
collection DOAJ
description Research relevance. The area of mechatronic systems use is constantly expanding. Depending on their purposes the control of different modes of motion using appropriate neural networks is needed. The development of new types of actuators and sensors is a vital scientific challenge. The research is aimed at the dynamics study of an elastically suspended toroidal actuator with electric capacity as a control parameter. Research methods. The authors have obtained and solved differential equations of motion for free and forced vibrations of the system. Theoretical study is based on the experiment in which the longitudinal motion of the toroid with current in a magnetic field pair is observed, motion analysis is based on the differential equation. Results. The paper describes theoretically free and forced vibrations of the toroidal actuator in a potential magnetic field in the presence of a capacitor in an electric circuit. The authors consider the special case when a potential magnetic field is stationary and homogeneous and determine the magnetic force acting on the toroid with current in a potential magnetic field in the presence of the capacitor in the external circuit. It was found that this force is proportional to the acceleration of the toroid and it is directed along the axis. Conclusion. The capacitive parameter reduces the system quasi-inertial coefficient. From the differential equations of natural vibrations of the system, the value of the natural frequency at the electromagnetic influence is determined. In the particular example compared the frequencies of a frequency in the absence of magnetic forces. The conclusion was made on possibility of adjusting the natural frequency of the electromagnetic system using capacitive parameter. From the differential equation of the forced oscillations the authors obtained the formula for calculating the resonant electric capacity. The results of theoretical research can be used to develop mechatronic systems with toroidal actuator. The eigen frequencies of such systems can be conveniently controlled by adjusting the capacitance parameter included in the circuit.
first_indexed 2024-03-13T07:49:58Z
format Article
id doaj.art-575650d2cd5e4afca3ee85ce4571033c
institution Directory Open Access Journal
issn 2500-1019
2413-1830
language Russian
last_indexed 2024-03-13T07:49:58Z
publishDate 2019-05-01
publisher Tomsk Polytechnic University
record_format Article
series Известия Томского политехнического университета: Инжиниринг георесурсов
spelling doaj.art-575650d2cd5e4afca3ee85ce4571033c2023-06-02T21:06:23ZrusTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Инжиниринг георесурсов2500-10192413-18302019-05-013266Control of mechatronic system longitudinal vibrations using capacitive parameterAleksandr K. TomilinElena ProkopenkoResearch relevance. The area of mechatronic systems use is constantly expanding. Depending on their purposes the control of different modes of motion using appropriate neural networks is needed. The development of new types of actuators and sensors is a vital scientific challenge. The research is aimed at the dynamics study of an elastically suspended toroidal actuator with electric capacity as a control parameter. Research methods. The authors have obtained and solved differential equations of motion for free and forced vibrations of the system. Theoretical study is based on the experiment in which the longitudinal motion of the toroid with current in a magnetic field pair is observed, motion analysis is based on the differential equation. Results. The paper describes theoretically free and forced vibrations of the toroidal actuator in a potential magnetic field in the presence of a capacitor in an electric circuit. The authors consider the special case when a potential magnetic field is stationary and homogeneous and determine the magnetic force acting on the toroid with current in a potential magnetic field in the presence of the capacitor in the external circuit. It was found that this force is proportional to the acceleration of the toroid and it is directed along the axis. Conclusion. The capacitive parameter reduces the system quasi-inertial coefficient. From the differential equations of natural vibrations of the system, the value of the natural frequency at the electromagnetic influence is determined. In the particular example compared the frequencies of a frequency in the absence of magnetic forces. The conclusion was made on possibility of adjusting the natural frequency of the electromagnetic system using capacitive parameter. From the differential equation of the forced oscillations the authors obtained the formula for calculating the resonant electric capacity. The results of theoretical research can be used to develop mechatronic systems with toroidal actuator. The eigen frequencies of such systems can be conveniently controlled by adjusting the capacitance parameter included in the circuit.http://izvestiya.tpu.ru/archive/article/view/1596vibrations of elastic systemsmagnetic forcetoroidelectrical capacitanceoscillation frequencyresonance
spellingShingle Aleksandr K. Tomilin
Elena Prokopenko
Control of mechatronic system longitudinal vibrations using capacitive parameter
Известия Томского политехнического университета: Инжиниринг георесурсов
vibrations of elastic systems
magnetic force
toroid
electrical capacitance
oscillation frequency
resonance
title Control of mechatronic system longitudinal vibrations using capacitive parameter
title_full Control of mechatronic system longitudinal vibrations using capacitive parameter
title_fullStr Control of mechatronic system longitudinal vibrations using capacitive parameter
title_full_unstemmed Control of mechatronic system longitudinal vibrations using capacitive parameter
title_short Control of mechatronic system longitudinal vibrations using capacitive parameter
title_sort control of mechatronic system longitudinal vibrations using capacitive parameter
topic vibrations of elastic systems
magnetic force
toroid
electrical capacitance
oscillation frequency
resonance
url http://izvestiya.tpu.ru/archive/article/view/1596
work_keys_str_mv AT aleksandrktomilin controlofmechatronicsystemlongitudinalvibrationsusingcapacitiveparameter
AT elenaprokopenko controlofmechatronicsystemlongitudinalvibrationsusingcapacitiveparameter