Matches in SemOpenAlex for { <https://semopenalex.org/work/W215764968> ?p ?o ?g. }
Showing items 1 to 93 of
93
with 100 items per page.
- W215764968 abstract "As the most common mechanisms for transmitting power and motion, gears and bearings have been widely used in various mechanical equipment. Many accidents have happened because of failing to detect and replace the faulty gears or bearings in time. Hence it is very important to perform accurate fault diagnosis of gears and bearings. When a gear or bearing has a fault, the vibration signal collected from the mechanical equipment will become non-stationary and contain a series of periodic impulses that are caused by the fault. Many theories and techniques have been developed to extract the faulty information based on analyzing periodic impulses contained in the vibration signals. It has been reported that neither time-domain analysis nor frequency-domain analysis can do well in analyzing non-stationary signals. Hence time-frequency analysis methods based on wavelet transform and Hilbert-Huang Transform (HHT) have been investigated. Wavelet transform includes continuous wavelet transform (CWT) and discrete wavelet transform (DWT). Research was reported to compare the performance of these methods in fault diagnosis of mechanical components. However, the previous works either only compared HHT based methods with CWT based methods, or only compared HHT based methods with DWT based methods, for certain applications. There are no reported comprehensive comparisons of the three methods for fault diagnosis of gears and bearings. Cepstrum analysis can detect the periodicity and reduce the influence of the noise for the low energy signals. However, previous research usually only applied Cepstrum analysis directly to extract fault features from the entire original signal. Some other existing methods first applied DWT to decompose the original signal to obtain the detail signals, and then used Hilbert spectral analysis to analyze the periodic impulses contained in the detail signals through identifying faulty characteristic frequency with frequency domain analysis and plotting the instantaneous amplitude with time domain analysis. Hilbert spectral analysis has the advantage in frequency domain analysis. However, sometimes it is not very sensitive in time domain analysis when the energy of the periodic impulses is not strong enough. In this thesis, we investigate fault diagnosis of gears and bearings using two sets of vibration monitoring data collected in the lab environment: one set for gear condition monitoring and the other for bearing condition monitoring. We propose an improved DWT method that integrates Cepstrum analysis to analyze the periodic impulses contained in the data. With the proposed method, the vibration signals are first decomposed using DWT, and Cepstrum analysis is used to analyze the resulting detail signals. The results show that the proposed method performs better than the existing methods of applying Cepstrum analysis directly. Furthermore, with the help of Cepstrum analysis, the proposed method has better performance in time domain analysis than Hilbert spectral analysis in analyzing the periodic impulses contained in the detail signals. A comprehensive study is conducted in this thesis to compare the following three methods in fault diagnosis of the gears and bearings: (1) The CWT method using time-wavelet energy spectrum, (2) the improved DWT method using Cepstrum analysis, and (3) the HHT method. The results show that in fault diagnosis of gears, the HHT method has better noise immunity and is more sensitive in frequency domain analysis than the other two methods. The proposed method shows its advantage in analyzing the periodic impulses in time domain than the other two methods. In fault diagnosis of the bearings, the fault can be more clearly detected using the CWT and DWT methods in analyzing the periodic impulse that caused by the outer race fault of the bearing. The results obtained in this thesis can assist researchers and practitioners to select suitable methods for fault diagnosis of gears and bearings." @default.
- W215764968 created "2016-06-24" @default.
- W215764968 creator A5028388405 @default.
- W215764968 date "2014-06-01" @default.
- W215764968 modified "2023-09-27" @default.
- W215764968 title "The comparison of the methods based on Wavelet Transform and Hilbert-Huang Transform in fault diagnosis of rotating machinery" @default.
- W215764968 hasPublicationYear "2014" @default.
- W215764968 type Work @default.
- W215764968 sameAs 215764968 @default.
- W215764968 citedByCount "0" @default.
- W215764968 crossrefType "dissertation" @default.
- W215764968 hasAuthorship W215764968A5028388405 @default.
- W215764968 hasConcept C103824480 @default.
- W215764968 hasConcept C111350171 @default.
- W215764968 hasConcept C115961682 @default.
- W215764968 hasConcept C121332964 @default.
- W215764968 hasConcept C127313418 @default.
- W215764968 hasConcept C127413603 @default.
- W215764968 hasConcept C153180895 @default.
- W215764968 hasConcept C154945302 @default.
- W215764968 hasConcept C165205528 @default.
- W215764968 hasConcept C168110828 @default.
- W215764968 hasConcept C175551986 @default.
- W215764968 hasConcept C19118579 @default.
- W215764968 hasConcept C196216189 @default.
- W215764968 hasConcept C198394728 @default.
- W215764968 hasConcept C199360897 @default.
- W215764968 hasConcept C199978012 @default.
- W215764968 hasConcept C24890656 @default.
- W215764968 hasConcept C2779843651 @default.
- W215764968 hasConcept C28799612 @default.
- W215764968 hasConcept C31972630 @default.
- W215764968 hasConcept C41008148 @default.
- W215764968 hasConcept C46286280 @default.
- W215764968 hasConcept C47432892 @default.
- W215764968 hasConcept C76155785 @default.
- W215764968 hasConcept C88485024 @default.
- W215764968 hasConcept C95722684 @default.
- W215764968 hasConcept C99498987 @default.
- W215764968 hasConceptScore W215764968C103824480 @default.
- W215764968 hasConceptScore W215764968C111350171 @default.
- W215764968 hasConceptScore W215764968C115961682 @default.
- W215764968 hasConceptScore W215764968C121332964 @default.
- W215764968 hasConceptScore W215764968C127313418 @default.
- W215764968 hasConceptScore W215764968C127413603 @default.
- W215764968 hasConceptScore W215764968C153180895 @default.
- W215764968 hasConceptScore W215764968C154945302 @default.
- W215764968 hasConceptScore W215764968C165205528 @default.
- W215764968 hasConceptScore W215764968C168110828 @default.
- W215764968 hasConceptScore W215764968C175551986 @default.
- W215764968 hasConceptScore W215764968C19118579 @default.
- W215764968 hasConceptScore W215764968C196216189 @default.
- W215764968 hasConceptScore W215764968C198394728 @default.
- W215764968 hasConceptScore W215764968C199360897 @default.
- W215764968 hasConceptScore W215764968C199978012 @default.
- W215764968 hasConceptScore W215764968C24890656 @default.
- W215764968 hasConceptScore W215764968C2779843651 @default.
- W215764968 hasConceptScore W215764968C28799612 @default.
- W215764968 hasConceptScore W215764968C31972630 @default.
- W215764968 hasConceptScore W215764968C41008148 @default.
- W215764968 hasConceptScore W215764968C46286280 @default.
- W215764968 hasConceptScore W215764968C47432892 @default.
- W215764968 hasConceptScore W215764968C76155785 @default.
- W215764968 hasConceptScore W215764968C88485024 @default.
- W215764968 hasConceptScore W215764968C95722684 @default.
- W215764968 hasConceptScore W215764968C99498987 @default.
- W215764968 hasLocation W2157649681 @default.
- W215764968 hasOpenAccess W215764968 @default.
- W215764968 hasPrimaryLocation W2157649681 @default.
- W215764968 hasRelatedWork W1976768792 @default.
- W215764968 hasRelatedWork W2120703751 @default.
- W215764968 hasRelatedWork W2121867333 @default.
- W215764968 hasRelatedWork W2125524209 @default.
- W215764968 hasRelatedWork W2183960967 @default.
- W215764968 hasRelatedWork W2347957614 @default.
- W215764968 hasRelatedWork W2352015602 @default.
- W215764968 hasRelatedWork W2361504514 @default.
- W215764968 hasRelatedWork W2371442679 @default.
- W215764968 hasRelatedWork W2371794750 @default.
- W215764968 hasRelatedWork W2373287683 @default.
- W215764968 hasRelatedWork W2376803098 @default.
- W215764968 hasRelatedWork W2385417515 @default.
- W215764968 hasRelatedWork W2539808758 @default.
- W215764968 hasRelatedWork W2610587186 @default.
- W215764968 hasRelatedWork W2729330628 @default.
- W215764968 hasRelatedWork W2735708406 @default.
- W215764968 hasRelatedWork W3002383648 @default.
- W215764968 hasRelatedWork W3046873498 @default.
- W215764968 hasRelatedWork W3121540820 @default.
- W215764968 isParatext "false" @default.
- W215764968 isRetracted "false" @default.
- W215764968 magId "215764968" @default.
- W215764968 workType "dissertation" @default.