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Application of local wave ti me-frequency method in reciprocating mechanical fault diagnosis
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作者 Wang Lei Wang Fengtao Ma Xiaojiang 《仪器仪表学报》 EI CAS CSCD 北大核心 2006年第z1期380-381,共2页
To diagnosethe reciprocating mechanical fault.We utilizedlocal waveti me-frequency approach.Firstly,we gave the principle.Secondly,the application of local wave ti me-frequency was given.Finally,we discusseditsvirtue ... To diagnosethe reciprocating mechanical fault.We utilizedlocal waveti me-frequency approach.Firstly,we gave the principle.Secondly,the application of local wave ti me-frequency was given.Finally,we discusseditsvirtue in reciprocating mechanical fault diagnosis. 展开更多
关键词 LOCAL WAVE method time-frequency analysis FAULT DIAGNOSIS
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A two-level method for sparse time-frequency representation of multiscale data Dedicated to Professor LI TaTsien on the Occasion of His 80th Birthday
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作者 LIU ChunGuang SHI ZuoQiang HOU Thomas Yizhao 《Science China Mathematics》 SCIE CSCD 2017年第10期1733-1752,共20页
Based on the recently developed data-driven time-frequency analysis(Hou and Shi, 2013), we propose a two-level method to look for the sparse time-frequency decomposition of multiscale data. In the two-level method, we... Based on the recently developed data-driven time-frequency analysis(Hou and Shi, 2013), we propose a two-level method to look for the sparse time-frequency decomposition of multiscale data. In the two-level method, we first run a local algorithm to get a good approximation of the instantaneous frequency. We then pass this instantaneous frequency to the global algorithm to get an accurate global intrinsic mode function(IMF)and instantaneous frequency. The two-level method alleviates the difficulty of the mode mixing to some extent.We also present a method to reduce the end effects. 展开更多
关键词 sparse representation time-frequency analysis matching pursuit two-level method end effects
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Output-only identification of the modal and physical properties of structures using free vibration response 被引量:3
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作者 Carlos A.Gaviria Luis A.Montejo 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2016年第3期575-589,共15页
The viability of a complete structural characterization of civil structures is explored and discussed. In particular, the identification of modal (i.e. natural frequencies, damping ratios and modal shapes) and physi... The viability of a complete structural characterization of civil structures is explored and discussed. In particular, the identification of modal (i.e. natural frequencies, damping ratios and modal shapes) and physical properties (i.e. mass and stiffness) using only the structure's free decay response is studied. To accomplish this, modal analysis from flee vibration response only (MAFVRO) and mass modification (MM) methodologies are engaged along with Wavelet based techniques for optimal signal processing and modal reconstruction. The methodologies are evaluated using simulated and experimental data. The simulated data are extracted from a simple elastic model of a 5 story shear building and from a more realistic nonlinear model of a RC frame structure. The experimental data are gathered from shake table test of a 2-story scaled shear building. Guidelines for the reconstruction procedure from the data are proposed as the quality of the identified properties is shown to be governed by adequate selection of the frequency bands and optimal modal shape reconstruction. Moreover, in cases where the structure has undergone damage, the proposed identification scheme can also be applied for preliminary assessment of structural health. 展开更多
关键词 mass modification method output-only modal analysis time-frequency analysis continuous waveletstransform Hilbert transform DAMPING
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