THE IMPLEMENTATION OF A NOVEL DIAGNOSTIC TECHNIQUE BY COMBINING MINIMUM-DISTANCE PATTERN RECOGNITION AND DISCRETE WAVELET TRANSFORMATION IN VIBRATION TESTING

This final project is focused on experimental verification of a novel method for machinery fault diagnostics. The method has been developed through numerical simulation in the master thesis compiled by Hilarius Tutut Sandewan (2010). In this respect, the method starts by forming the feature vector....

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Main Author: IRMI (NIM : 13106073); Pembimbing : Ir. Ign. Pulung Nurprasetio, MSME., ARIS
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/15023
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:15023
spelling id-itb.:150232017-09-27T10:40:53ZTHE IMPLEMENTATION OF A NOVEL DIAGNOSTIC TECHNIQUE BY COMBINING MINIMUM-DISTANCE PATTERN RECOGNITION AND DISCRETE WAVELET TRANSFORMATION IN VIBRATION TESTING IRMI (NIM : 13106073); Pembimbing : Ir. Ign. Pulung Nurprasetio, MSME., ARIS Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/15023 This final project is focused on experimental verification of a novel method for machinery fault diagnostics. The method has been developed through numerical simulation in the master thesis compiled by Hilarius Tutut Sandewan (2010). In this respect, the method starts by forming the feature vector. Fault identification is performed based on the distance between the measured feature vector and the feature vectors in the data base. The main contribution of this final project is to verify the effectiveness of the method which combines the minimum distance pattern recognition and wavelet transform. The wavelet transform used in this method is the decimated discrete wavelet transform (DWT). The feature vector is assembled from the wavelet filter coefficients. The effectiveness of this method will be proved by experimental <br /> <br /> <br /> verification. In this case, two standard faults are simulated, namely the unbalance and mechanical looseness. The outcomes of the experiment show promising results, <br /> <br /> <br /> which concludes the effectiveness of the method. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description This final project is focused on experimental verification of a novel method for machinery fault diagnostics. The method has been developed through numerical simulation in the master thesis compiled by Hilarius Tutut Sandewan (2010). In this respect, the method starts by forming the feature vector. Fault identification is performed based on the distance between the measured feature vector and the feature vectors in the data base. The main contribution of this final project is to verify the effectiveness of the method which combines the minimum distance pattern recognition and wavelet transform. The wavelet transform used in this method is the decimated discrete wavelet transform (DWT). The feature vector is assembled from the wavelet filter coefficients. The effectiveness of this method will be proved by experimental <br /> <br /> <br /> verification. In this case, two standard faults are simulated, namely the unbalance and mechanical looseness. The outcomes of the experiment show promising results, <br /> <br /> <br /> which concludes the effectiveness of the method.
format Final Project
author IRMI (NIM : 13106073); Pembimbing : Ir. Ign. Pulung Nurprasetio, MSME., ARIS
spellingShingle IRMI (NIM : 13106073); Pembimbing : Ir. Ign. Pulung Nurprasetio, MSME., ARIS
THE IMPLEMENTATION OF A NOVEL DIAGNOSTIC TECHNIQUE BY COMBINING MINIMUM-DISTANCE PATTERN RECOGNITION AND DISCRETE WAVELET TRANSFORMATION IN VIBRATION TESTING
author_facet IRMI (NIM : 13106073); Pembimbing : Ir. Ign. Pulung Nurprasetio, MSME., ARIS
author_sort IRMI (NIM : 13106073); Pembimbing : Ir. Ign. Pulung Nurprasetio, MSME., ARIS
title THE IMPLEMENTATION OF A NOVEL DIAGNOSTIC TECHNIQUE BY COMBINING MINIMUM-DISTANCE PATTERN RECOGNITION AND DISCRETE WAVELET TRANSFORMATION IN VIBRATION TESTING
title_short THE IMPLEMENTATION OF A NOVEL DIAGNOSTIC TECHNIQUE BY COMBINING MINIMUM-DISTANCE PATTERN RECOGNITION AND DISCRETE WAVELET TRANSFORMATION IN VIBRATION TESTING
title_full THE IMPLEMENTATION OF A NOVEL DIAGNOSTIC TECHNIQUE BY COMBINING MINIMUM-DISTANCE PATTERN RECOGNITION AND DISCRETE WAVELET TRANSFORMATION IN VIBRATION TESTING
title_fullStr THE IMPLEMENTATION OF A NOVEL DIAGNOSTIC TECHNIQUE BY COMBINING MINIMUM-DISTANCE PATTERN RECOGNITION AND DISCRETE WAVELET TRANSFORMATION IN VIBRATION TESTING
title_full_unstemmed THE IMPLEMENTATION OF A NOVEL DIAGNOSTIC TECHNIQUE BY COMBINING MINIMUM-DISTANCE PATTERN RECOGNITION AND DISCRETE WAVELET TRANSFORMATION IN VIBRATION TESTING
title_sort implementation of a novel diagnostic technique by combining minimum-distance pattern recognition and discrete wavelet transformation in vibration testing
url https://digilib.itb.ac.id/gdl/view/15023
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