Multi-channel fused wind power planetary gearbox fault diagnosis method

A planetary gearbox and fault diagnosis technology, which is applied in the field of multi-channel fusion wind power planetary gearbox fault diagnosis, can solve problems such as gearboxes that are not considered, and achieve the goal of avoiding deep damage, ensuring healthy and stable operation, and suppressing noise and interference Effect

Pending Publication Date: 2022-04-08
江苏国科智能电气有限公司 +1
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Problems solved by technology

[0004] Existing research on fault diagnosis of wind power planetary gearboxes based on deep learning mostly only focuses on the fault feature extraction of components by a single sensor, and does not take into account that when the gearbox fails, it will produce multi-part coupling. The information can provide more comprehensive state information for planetary gearbox fault diagnosis and improve the diagnostic accuracy of the model

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  • Multi-channel fused wind power planetary gearbox fault diagnosis method
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  • Multi-channel fused wind power planetary gearbox fault diagnosis method

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Embodiment Construction

[0032] Below in conjunction with embodiment, the present invention is described in further detail:

[0033] like figure 1 As shown, the multi-channel fusion wind power planetary gearbox fault diagnosis method includes the following steps:

[0034] 1) Step S1, collecting the sensor monitoring data of the multi-channel vibration signal of the wind power planetary gearbox; for the sensor monitoring data of the health state of the tag, preprocessing the time series data of the multi-channel vibration signal to obtain a specified range The two-dimensional multi-channel time series input matrix of ; specifically includes:

[0035] Step S11, collecting sensor data at multiple positions of the wind power planetary gearbox, such as figure 1 As shown, it mainly includes the multi-channel vibration signals of the front bearing of the gearbox input end, the vertical direction of the gearbox ring gear, the vertical direction of the rear bearing of the low-speed shaft of the gearbox, and ...

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Abstract

The invention provides a multi-channel fused wind power planetary gear box fault diagnosis method, which comprises the following steps of: collecting multi-sensor vibration signals of key positions of a wind power planetary gear box, considering fault coupling association information between channels, designing global and local convolutional neural networks to automatically extract coupling characteristics between the channels and fault characteristics in the channels, and carrying out fault diagnosis on the wind power planetary gear box. Therefore, more complete fault information of the planetary gearbox is obtained, and the adaptive dynamic weighting module is utilized to screen fault high-correlation characteristics and suppress noise interference, so that the fault diagnosis precision is further improved. The method can automatically extract and fuse the spatio-temporal characteristics in the multi-channel vibration signals, inhibits interference, and improves the fault characteristic extraction capability and the fault diagnosis precision.

Description

technical field [0001] The invention relates to the technical field of fault diagnosis of a wind power generator gearbox, in particular to a multi-channel fusion wind power planetary gearbox fault diagnosis method. Background technique [0002] Gear transmission system is an important part of large-scale doubly-fed wind turbines and the key to energy transmission and conversion. As the core component of the traditional gear system, the planetary gearbox is also one of the main sources of frequent failures of wind turbines. The internal structure of the planetary gearbox is complicated. Under the complex working conditions of low speed, heavy load, alternating load and strong gust impact for a long time, the key components such as internal bearings and gears are prone to wear, fracture and other failures, and even chain reactions evolve into Shutdown of the entire system. These failures and unplanned downtime have seriously affected the economic benefits of wind farms and t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01M13/021G01M13/028G06N3/04G06N3/08G06K9/62
Inventor 武鑫江国乾吕佃顺王立鹏马强赵栋利
Owner 江苏国科智能电气有限公司
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