Citation: | LI Yong, ZHANG Qizhi, ZHUANG Deyu, et al. Diagnosis method for planetary gear faults in shearer under strong noise interference[J]. Journal of Mine Automation,2024,50(6):142-149. doi: 10.13272/j.issn.1671-251x.18177 |
[1] |
焦玉冰,李杰,马喜宏,等. 一种采煤机截割部滚动轴承故障诊断方法[J]. 计算机测量与控制,2023,31(5):73-79.
JIAO Yubing,LI Jie,MA Xihong,et al. A fault diagnosis method for rolling bearing of shearer cutting section[J]. Computer Measurement & Control,2023,31(5):73-79.
|
[2] |
毛清华,张勇强,赵晓勇,等. 变速工况下采煤机行星齿轮传动系统故障诊断[J]. 工矿自动化,2021,47(7):8-13.
MAO Qinghua,ZHANG Yongqiang,ZHAO Xiaoyong,et al. Fault diagnosis method of shearer planetary gear transmission system under variable speed conditions[J]. Industry and Mine Automation,2021,47(7):8-13.
|
[3] |
史志远,滕虎,马驰. 基于多信息融合和卷积神经网络的行星齿轮箱故障诊断[J]. 工矿自动化,2022,48(9):56-62.
SHI Zhiyuan,TENG Hu,MA Chi. Fault diagnosis of planetary gearbox based on multi-information fusion and convolutional neural network[J]. Journal of Mine Automation,2022,48(9):56-62.
|
[4] |
PAN Yubin,WANG Hua,CHEN Jie,et al. Fault recognition of large-size low-speed slewing bearing based on improved deep belief network[J]. Journal Vibration and Control,2023,29(11/12):2829-2841.
|
[5] |
李华,刘韬,伍星,等. 相关奇异值比的SVD在轴承故障诊断中的应用[J]. 机械工程学报,2021,57(21):138-149. doi: 10.3901/JME.2021.21.138
LI Hua,LIU Tao,WU Xing,et al. Application of SVD based on correlated singular value ratio in bearing fault diagnosis[J]. Journal of Mechanical Engineering,2021,57(21):138-149. doi: 10.3901/JME.2021.21.138
|
[6] |
刘湘楠,赵学智,上官文斌. 强背景噪声振动信号中滚动轴承故障冲击特征提取[J]. 振动工程学报,2021,34(1):202-210.
LIU Xiangnan,ZHAO Xuezhi,SHANGGUAN Wenbin. The impact features extraction of rolling bearing under strong background noise[J]. Journal of Vibration Engineering,2021,34(1):202-210.
|
[7] |
CHENG Jian,YANG Yu,LI Xin,et al. An early fault diagnosis method of gear based on improved symplectic geometry mode decomposition[J]. Measurement,2020,151. DOI: 10.1016/j.measurement.2019.107140.
|
[8] |
NIAKI S T,ALAVI H,OHADI A. Incipient fault detection of helical gearbox based on variational mode decomposition and time synchronous averaging[J]. Structural Health Monitoring,2023,22(2):1494-1512.
|
[9] |
崔玲丽,刘银行,王鑫. 基于改进奇异值分解的滚动轴承微弱故障特征提取方法[J]. 机械工程学报,2022,58(17):156-169. doi: 10.3901/JME.2022.17.156
CUI Lingli,LIU Yinhang,WANG Xin. Feature extraction of weak fault for rolling bearing based on improved singular value decomposition[J]. Journal of Mechanical Engineering,2022,58(17):156-169. doi: 10.3901/JME.2022.17.156
|
[10] |
刘宝华,张穆勇,臧延旭,等. 基于AIF和TT的滚动轴承复合故障诊断[J]. 振动. 测试与诊断,2022,42(6):1206-1211,1249.
LIU Baohua,ZHANG Muyong,ZANG Yanxu,et al. Compound fault diagnosis of rolling bearings based on AIF and improved time-time transform[J]. Journal of Vibration,Measurement & Diagnosis,2022,42(6):1206-1211,1249.
|
[11] |
吕琛,宋希庚,邹积斌. 基于DSP的振动信号阶比与时域同步平均分析[J]. 振动与冲击,2002,21(2):53-57. doi: 10.3969/j.issn.1000-3835.2002.02.015
LYU Chen,SONG Xigeng,ZOU Jibin. DSP-based order domain and time domain synchronous averaging analysis of vibration signal[J]. Journal of Vibration and Shock,2002,21(2):53-57. doi: 10.3969/j.issn.1000-3835.2002.02.015
|
[12] |
郭远晶,金晓航,魏燕定,等. 改进TSA降噪与平方包络谱分析的故障特征提取[J]. 振动工程学报,2021,34(2):402-410.
GUO Yuanjing,JIN Xiaohang,WEI Yanding,et al. Fault feature extraction based on improved TSA denoising and squared envelope spectrum[J]. Journal of Vibration Engineering,2021,34(2):402-410.
|
[13] |
杜文辽,高军杰,杨凌凯,等. 多尺度加权CEEMD−1DCNN旋转机械故障诊断[J]. 机床与液压,2023,51(17):202-208. doi: 10.3969/j.issn.1001-3881.2023.17.033
DU Wenliao,GAO Junjie,YANG Lingkai,et al. Multi-scale weighted CEEMD-1DCNN rotating machinery fault diagnosis[J]. Machine Tool & Hydraulics,2023,51(17):202-208. doi: 10.3969/j.issn.1001-3881.2023.17.033
|
[14] |
候双珊,郑近德,潘海洋,等. 基于复合多尺度交叉模糊熵的行星齿轮箱故障诊断[J]. 振动与冲击,2023,42(20):130-135,171.
HOU Shuangshan,ZHENG Jinde,PAN Haiyang,et al. Planetary gearbox fault diagnosis based on composite multi-scale cross fuzzy entropy[J]. Journal of Vibration and Shock,2023,42(20):130-135,171.
|
[15] |
ZHAN Shanning,SHAO Ruipeng,MEN Chengjie,et al. Fault diagnosis method for planetary gearbox based on intrinsic feature extraction and attention mechanism[J]. Measurement Science and Technology,2024,35(3). DOI: 10.1088/1361-6501/AD147B.
|
[16] |
崔石玉,朱志宇. 基于参数迁移和一维卷积神经网络的海水泵故障诊断[J]. 振动与冲击,2021,40(24):180-189.
CUI Shiyu,ZHU Zhiyu. Seawater pump fault diagnosis based on parameter transfer and one-dimensional convolutional neural network[J]. Journal of Vibration and Shock,2021,40(24):180-189.
|
[17] |
GUO Runxia,LI Haonan,HUANG Chao. Operation stage division and RUL prediction of bearings based on 1DCNN-ON-LSTM[J]. Measurement Science and Technology,2024,35(2). DOI: 10.1088/1361-6501/AD0E3A.
|
[18] |
张搏文,庞新宇,关重阳. 基于DPD−1DCNN的行星齿轮箱故障诊断方法研究[J]. 机械传动,2023,47(3):113-119.
ZHANG Bowen,PANG Xinyu,GUAN Chongyang. Research on fault diagnosis method of planetary gearboxes based on DPD-1DCNN[J]. Journal of Mechanical Transmission,2023,47(3):113-119.
|
[19] |
GAO Shuzhi,LI Tianchi,ZHANG Yimin,et al. Fault diagnosis method of rolling bearings based on adaptive modified CEEMD and 1DCNN model[J]. ISA Transactions,2023,140:309-330. doi: 10.1016/j.isatra.2023.05.014
|
[20] |
JIANG Jun,LI Wei,WEN Zhe,et al. Series arc fault detection based on random forest and deep neural network[J]. IEEE Sensors Journal,2021,21(15):17171-17179. doi: 10.1109/JSEN.2021.3082294
|
[21] |
陈曦晖. 强噪声干扰下行星轮系振动信号分析及其故障诊断技术研究[D]. 徐州:中国矿业大学,2017.
CHEN Xihui. Research of vibration signal analysis and fault diagnosis technology of planetary gear in strong noise interference[D]. Xuzhou:China University of Mining and Technology,2017.
|