Optimization of aero-engine condition monitoring by autoregressive model analysis based on wireless communication

被引:0
|
作者
Xin, Mai [1 ]
Ye, Zhifeng [1 ]
Liu, Xing [2 ]
Pan, Xiong [3 ]
机构
[1] Nanjing Univ Aeronaut & Astronaut, Coll Energy & Power Engn, Nanjing Yudao St 29, Nanjing 210016, Peoples R China
[2] AO Smith China Water Heater Co Ltd, Nanjing, Peoples R China
[3] Shanghai Aircraft Design & Res Inst, Shanghai, Peoples R China
来源
关键词
Wireless communication; autoregressive model; aero-engine; health management; operating condition; monitoring;
D O I
10.1177/00202940241275316
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The high value of aero-engines makes it necessary to extend their life in terms of econ-omy of use. Health management is an important basis for this work. Background: The vibration signal is an important representation of the working state of an aero-engine. The current usual method is based on wired communication with simple waveform presentation. The many incon-veniences of this method have seriously affected the further development of this work. Methods: This research team acquires engine vibration signals in real time through a designed wireless signal sensor, and then analyzes and visualizes the signals in depth. Results: Through this method, it can visually and effectively demonstrate signal characteristics for engineers, effectively identify fault signals, and monitor engine operating conditions in real time. Conclusions: The method enables the optimization of aero-engine work-state monitoring.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] Blade sequencing optimization of aero-engine based on deep reinforcement learning
    Sun, Chuanzhi
    Wu, Huilin
    Lu, Qing
    Wang, Yinchu
    Liu, Yongmeng
    Tan, Jiubin
    AEROSPACE SCIENCE AND TECHNOLOGY, 2023, 142
  • [42] Transient Control Method of Aero-Engine Based on Dynamic Optimization Data
    Huang R.-Y.
    Huang J.-Q.
    Pan M.-X.
    Tuijin Jishu/Journal of Propulsion Technology, 2021, 42 (02): : 459 - 466
  • [43] An Optimization Strategy for Aero-engine Transient Control Schedule Based on The On-board Adaptive Model
    Dai, Anning
    Du, Xian
    Sun, Ximing
    Li, Yupeng
    Chen, Jixiang
    PROCEEDINGS OF THE 38TH CHINESE CONTROL CONFERENCE (CCC), 2019, : 761 - 766
  • [44] Optimization of aero-engine nozzle control schedule under the maximum dry thrust condition based on installation performance
    Xie, Y.-P., 1600, Beijing University of Aeronautics and Astronautics (BUAA) (29):
  • [45] Reliability Based Design Optimization of Aero-Engine Spindle Ball Bearings
    杨静
    孟德彪
    张小玲
    汪忠来
    许焕卫
    JournalofDonghuaUniversity(EnglishEdition), 2014, 31 (06) : 853 - 855
  • [46] Repair Decision Based on Sensitivity Analysis for Aero-Engine Assembly
    Sun, Yanhui
    Guo, Junkang
    Hong, Jun
    Liu, Guanghui
    Wu, Wenwu
    Yue, Cong
    INTERNATIONAL JOURNAL OF PRECISION ENGINEERING AND MANUFACTURING, 2019, 20 (03) : 347 - 362
  • [47] Study of system monitoring and fault diagnosis for aero-engine
    Chen, Zhiying
    Tuijin Jishu/Journal of Propulsion Technology, 1998, 19 (05): : 52 - 54
  • [48] Research on reliability of aero-engine nacelle based on survival analysis
    Chen Z.
    Chen X.
    Zhang X.
    Chen J.
    Liang Y.
    Aerospace Systems, 2023, 6 (03) : 491 - 500
  • [49] An industrial CT system for monitoring a running aero-engine
    常铭
    肖永顺
    陈志强
    NuclearScienceandTechniques, 2014, 25 (06) : 26 - 32
  • [50] Information tracking and process monitoring for aero-engine assembly
    Li L.
    Yin G.
    Mo R.
    2018, CIMS (24): : 2986 - 3000