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Electrical Engineering and Automation

Electrical Engineering and Automation is an international comprehensive professional academic journal of Ivy Publisher, concerning the development of electrical theory and automation on the combination of electrical theory and modern industrial technology. The main focus of the journal is the academic papers and comments of latest power electronics theoretical and technical research improvement in the fields of nature science, engineering technol... [More] Electrical Engineering and Automation is an international comprehensive professional academic journal of Ivy Publisher, concerning the development of electrical theory and automation on the combination of electrical theory and modern industrial technology. The main focus of the journal is the academic papers and comments of latest power electronics theoretical and technical research improvement in the fields of nature science, engineering technology, economy and science, report of latest research result, aiming at providing a good communication platform to transfer, share and discuss the theoretical and technical development of electrical theory development for professionals, scholars and researchers in this field, reflecting the academic front level, promote academic change and foster the rapid expansion of electrical theory and automation application technology.

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ISSN Print:2326-876X

ISSN Online:2326-8778

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Paper Infomation

Research on Feature Extraction and Classification Method of Vibration Signal of Escalator Sprocket Bearing

Full Text(PDF, 4355KB)

Author: Deyang Liu, Yuhang Su, Ningxiang Yang, Jianxun Chen, Jicheng Li

Abstract: In order to improve the accuracy of escalator sprocket bearing fault diagnosis, the problem of the feature extraction method of bearing vibration signal is addressed. In this paper, empirical mode is used to decompose the original signal, and the optimal modal component among the multiple modal components is obtained after the optimization decomposition is selected by the envelope spectrum method, and the multi-angle feature measure is introduced to extract the fault characteristic value. According to the vibration characteristics of the bearing vibration signal data, a bearing signal feature group that is more inclined to the fault feature category information is established, which avoids the absolute problem of extracting a single metric feature. The fuzzy C-means clustering algorithm is used to cluster the sample data with similar characteristics into the same cluster area, which effectively solves the problem that a single measurement analysis cannot characterize the complex internal characteristics of the bearing vibration signal.

Keywords: Bearing, Vibration, Multi-Angle Feature Measurement, Signal Feature Group, Empirical Mode, Fuzzy C-Means Clustering

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