Monitoring Vibration of A Model of Rotating Machine
<p>Mechanical movement or motion of a rotating machine normally causes additional vibration. A vibration sensing device must be added to constantly monitor vibration level of the system having a rotating machine, since the vibration frequency and amplitude cannot be measured quantitatively by...
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Indonesian Institute of Sciences
2012-03-01
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doaj-e7fbff57b7b745e7bdf820e521f633352020-11-25T03:41:43ZengIndonesian Institute of SciencesJournal of Mechatronics, Electrical Power, and Vehicular Technology2087-33792088-69852012-03-0121515610.14203/j.mev.2011.v2.51-5616Monitoring Vibration of A Model of Rotating MachineArko Djajadi0Arsi Azavi1Rusman Rusyadi2Erikson Sinaga3Mechatronics Department, Faculty of Engineering, Swiss German University (SGU), EduTown BSDCity, Tangerang 15339Mechatronics Department, Faculty of Engineering, Swiss German University (SGU), EduTown BSDCity, Tangerang 15339Mechatronics Department, Faculty of Engineering, Swiss German University (SGU), EduTown BSDCity, Tangerang 15339Mechatronics Department, Faculty of Engineering, Swiss German University (SGU), EduTown BSDCity, Tangerang 15339<p>Mechanical movement or motion of a rotating machine normally causes additional vibration. A vibration sensing device must be added to constantly monitor vibration level of the system having a rotating machine, since the vibration frequency and amplitude cannot be measured quantitatively by only sight or touch. If the vibration signals from the machine have a lot of noise, there are possibilities that the rotating machine has defects that can lead to failure. In this experimental research project, a vibration structure is constructed in a scaled model to simulate vibration and to monitor system performance in term of vibration level in case of rotation with balanced and unbalanced condition. In this scaled model, the output signal of the vibration sensor is processed in a microcontroller and then transferred to a computer via a serial communication medium, and plotted on the screen with data plotter software developed using C language. The signal waveform of the vibration is displayed to allow further analysis of the vibration. Vibration level monitor can be set in the microcontroller to allow shutdown of the rotating machine in case of excessive vibration to protect the rotating machine from further damage. Experiment results show the agreement with theory that unbalance condition on a rotating machine can lead to larger vibration amplitude compared to balance condition. Adding and reducing the mass for balancing can be performed to obtain lower vibration level.</p><p> </p>http://mevjournal.com/index.php/mev/article/view/19Mechanical Vibration SensorMicrocontrollerData Plotter SoftwareScaled ModelMonitoring |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Arko Djajadi Arsi Azavi Rusman Rusyadi Erikson Sinaga |
spellingShingle |
Arko Djajadi Arsi Azavi Rusman Rusyadi Erikson Sinaga Monitoring Vibration of A Model of Rotating Machine Journal of Mechatronics, Electrical Power, and Vehicular Technology Mechanical Vibration Sensor Microcontroller Data Plotter Software Scaled Model Monitoring |
author_facet |
Arko Djajadi Arsi Azavi Rusman Rusyadi Erikson Sinaga |
author_sort |
Arko Djajadi |
title |
Monitoring Vibration of A Model of Rotating Machine |
title_short |
Monitoring Vibration of A Model of Rotating Machine |
title_full |
Monitoring Vibration of A Model of Rotating Machine |
title_fullStr |
Monitoring Vibration of A Model of Rotating Machine |
title_full_unstemmed |
Monitoring Vibration of A Model of Rotating Machine |
title_sort |
monitoring vibration of a model of rotating machine |
publisher |
Indonesian Institute of Sciences |
series |
Journal of Mechatronics, Electrical Power, and Vehicular Technology |
issn |
2087-3379 2088-6985 |
publishDate |
2012-03-01 |
description |
<p>Mechanical movement or motion of a rotating machine normally causes additional vibration. A vibration sensing device must be added to constantly monitor vibration level of the system having a rotating machine, since the vibration frequency and amplitude cannot be measured quantitatively by only sight or touch. If the vibration signals from the machine have a lot of noise, there are possibilities that the rotating machine has defects that can lead to failure. In this experimental research project, a vibration structure is constructed in a scaled model to simulate vibration and to monitor system performance in term of vibration level in case of rotation with balanced and unbalanced condition. In this scaled model, the output signal of the vibration sensor is processed in a microcontroller and then transferred to a computer via a serial communication medium, and plotted on the screen with data plotter software developed using C language. The signal waveform of the vibration is displayed to allow further analysis of the vibration. Vibration level monitor can be set in the microcontroller to allow shutdown of the rotating machine in case of excessive vibration to protect the rotating machine from further damage. Experiment results show the agreement with theory that unbalance condition on a rotating machine can lead to larger vibration amplitude compared to balance condition. Adding and reducing the mass for balancing can be performed to obtain lower vibration level.</p><p> </p> |
topic |
Mechanical Vibration Sensor Microcontroller Data Plotter Software Scaled Model Monitoring |
url |
http://mevjournal.com/index.php/mev/article/view/19 |
work_keys_str_mv |
AT arkodjajadi monitoringvibrationofamodelofrotatingmachine AT arsiazavi monitoringvibrationofamodelofrotatingmachine AT rusmanrusyadi monitoringvibrationofamodelofrotatingmachine AT eriksonsinaga monitoringvibrationofamodelofrotatingmachine |
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