Vibration Signal Analysis of Roadheader Based on Referential Manifold Learning

IF 1.2 4区 工程技术 Q3 ACOUSTICS Shock and Vibration Pub Date : 2023-09-20 DOI:10.1155/2023/8818380
Hai Jiang, Xiaodong Ji, Yang Yang, Yuanyuan Qu, Miao Wu
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Abstract

Roadheader is important large equipment in coal mining. The roadheader has a higher failure rate due to its harsh working environment and high working intensity. In this paper, we proposed a fault diagnosis method based on reference manifold (RM) learning by using the vibration signals of roadheader in the actual production process. First, health and fault vibration signals were extracted from a large number of field data. The abovementioned signals were analyzed by time domain and wavelet packet energy analysis and got the characteristic parameters of the signal which can form the characteristic parameter sets. RM method can reduce the dimension of the characteristic parameters, and the projection of different characteristic parameters was obtained. Finally, the health parameters and fault parameters of different characteristic parameters were segmented by linear discriminant analysis (LDA). It could get the different segment area range of characteristic parameters for health signals and fault signals. This method provides a set of fault analysis ideas and methods for equipment working under complex working conditions and improves the theoretical basis for fault type analysis.
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基于参考流形学习的掘进机振动信号分析
掘进机是煤矿开采中重要的大型设备。掘进机工作环境恶劣,工作强度大,故障率较高。本文利用掘进机实际生产过程中的振动信号,提出了一种基于参考流形(RM)学习的故障诊断方法。首先,从大量现场数据中提取健康和故障振动信号;对上述信号进行时域分析和小波包能量分析,得到信号的特征参数,形成特征参数集。RM方法可以将特征参数降维,得到不同特征参数的投影。最后,利用线性判别分析(LDA)对不同特征参数的健康参数和故障参数进行分割。该方法可以得到健康信号和故障信号特征参数的不同分段面积范围。该方法为工作在复杂工况下的设备提供了一套故障分析思路和方法,提高了故障类型分析的理论基础。
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来源期刊
Shock and Vibration
Shock and Vibration 物理-工程:机械
CiteScore
3.40
自引率
6.20%
发文量
384
审稿时长
3 months
期刊介绍: Shock and Vibration publishes papers on all aspects of shock and vibration, especially in relation to civil, mechanical and aerospace engineering applications, as well as transport, materials and geoscience. Papers may be theoretical or experimental, and either fundamental or highly applied.
期刊最新文献
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