A Bearing Fault Diagnosis Method Based on Walsh Transform and Teager Energy Operator

An energy operator demodulation and bearing technology, which is applied in the direction of measuring devices, testing of mechanical components, testing of machine/structural components, etc., can solve engineering problems such as increased time, oscillation effects, etc., to reduce the amount of calculation and enhance faults characteristics, effects of reducing adverse effects

Active Publication Date: 2019-09-03
WENZHOU UNIV
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Problems solved by technology

However, the use of wavelet transform to suppress noise often causes oscillation effects when dealing with low signal-to-noise ratio signals. At the same time, it is necessary to manually select a suitable wavelet when performing wavelet transform, which greatly increases the time required for the processing of practical engineering problems.

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  • A Bearing Fault Diagnosis Method Based on Walsh Transform and Teager Energy Operator
  • A Bearing Fault Diagnosis Method Based on Walsh Transform and Teager Energy Operator
  • A Bearing Fault Diagnosis Method Based on Walsh Transform and Teager Energy Operator

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[0038] The scope of protection of the present invention is not limited to the following specific embodiments. Those skilled in the art can implement the present invention by using other various specific embodiments according to the disclosed content of the present invention, or whoever adopts the design structure and ideas of the present invention, Any simple change or change falls within the protection scope of the present invention.

[0039] Specific embodiments of the present invention such as Figure 1-5 Shown is a rolling bearing fault diagnosis method based on Walsh transform and Teager energy operator. The acceleration sensor is fixed on the test bearing seat, and the output end of the acceleration sensor is connected to the AVANT-MI-7016 multi-channel data acquisition instrument. The acquisition instrument collects the The data is sent to the computer, which uses the computer to perform Walsh transformation on the signal to eliminate noise, teager energy operator demod...

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Abstract

The invention belongs to the field of mechanical equipment fault diagnosis. The invention discloses a rolling bearing fault diagnosis method based on the Walsh transformation and Teager energy operator. The specific contents are as follows: first, an acceleration sensor is fixed on a bearing seat under test, the acceleration sensor is connected with a data acquisition instrument to obtain a bearing vibration signal, then a bearing fault diagnosis is performed, and subjecting the signal to Walsh transform denoising; fault features are extracted by Teager energy operator demodulation; and the bearing fault type is positioned and identified by comparing with a theoretical calculating value. The invention takes the vibration signal as the research object, combines the Walsh transform denoisingand the Teager energy operator demodulation, and proposes the novel bearing fault diagnosis method. The bearing fault diagnosis method in the invention can effectively diagnose the fault type of a rolling bearing and has the advantages of high diagnostic accuracy.

Description

technical field [0001] The invention belongs to the technical field of mechanical equipment fault diagnosis, in particular to a bearing fault diagnosis method based on Walsh transformation and Teager energy operator. Background technique [0002] Under modern industrial production conditions, the structure of mechanical equipment is becoming more and more refined, the level of automation is getting higher and higher, the operating conditions are becoming more and more complex, and people's requirements for mechanical equipment are becoming more and more stringent. Rolling bearing is an important part of the machine, it is widely used in chemical industry, metallurgy, electric power, aerospace and other important departments. [0003] Rolling bearings are also one of the most easily damaged components. According to statistics, bearing failures account for as much as 40% of rotating machinery failures. The main measure to deal with bearing failures at this stage is to carry o...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01M13/045
Inventor 向家伟高强周余庆钟永腾
Owner WENZHOU UNIV
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