Aircraft gas turbine engines' technical condition identification system

被引:0
作者
Abdullayev, P. S. [1 ]
Pashayev, A. M. [1 ]
Askerov, D. D. [1 ]
Sadiqov, R. A. [1 ]
机构
[1] Azerbaijan Natl Acad Aviat, H Aliyev Int Airport, AZ-1045 Baku, Azerbaijan
来源
Proceedings of the ASME Turbo Expo 2005, Vol 1 | 2005年
关键词
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
In this paper is shown that the probability-statistic methods application, especially at the early stage of the aviation gas turbine engine (GTE) technical condition diagnosing, when the flight information has property of the fuzzy, limitation and uncertainty is unfounded. Hence is considered the efficiency of application of new technology Soft Computing at these diagnosing stages with the using of the Fuzzy Logic and Neural Networks methods. Training with high accuracy of fuzzy multiple linear and non-linear models (fuzzy regression equations) which received on the statistical fuzzy data basis is made. Thus for GTE technical condition more adequate model making are analysed dynamics of skewness and kurtosis coefficients' changes. Researches of skewness and kurtosis coefficients values' changes show that, distributions of GTE work parameters have fuzzy character. Hence consideration of fuzzy skewness and kurtosis coefficients is expedient. Investigation of the basic characteristics changes' dynamics of GTE work parameters allows to draw conclusion on necessity of the Fuzzy Statistical Analysis at preliminary identification of the engines' technical condition. Researches of correlation coefficients values' changes shows also on their fuzzy character. Therefore for models choice the application of the Fuzzy Correlation Analysis results is offered. At the information sufficiency is offered to use recurrent algorithm of aviation GTE technical condition identification (Hard Computing technology is used) on measurements of input and output parameters of the multiple linear and nonlinear generalised models at presence of noise measured (the new recursive Least Squares Method (LSM)). The developed GTE condition monitoring system provides stage-by-stage estimation of engine technical conditions. As application of the given technique the estimation of the new operating aviation engine D-30KU-154 technical condition was made.
引用
收藏
页码:221 / 230
页数:10
相关论文
共 50 条
  • [31] Robust Control and Limit Protection in Aircraft Gas Turbine Engines
    Kolmanovsky, Ilya V.
    Jaw, Link C.
    Merrill, Walt
    Van, H. Tran
    2012 IEEE INTERNATIONAL CONFERENCE ON CONTROL APPLICATIONS (CCA), 2012, : 812 - 819
  • [32] EXHAUST EMISSION CHARACTERISTICS OF AIRCRAFT GAS-TURBINE ENGINES
    NELSON, AW
    MECHANICAL ENGINEERING, 1972, 94 (06) : 58 - &
  • [33] Statistical estimation of multiple faults in aircraft gas turbine engines
    Sarkar, S.
    Rao, C.
    Ray, A.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 2009, 223 (G4) : 415 - 424
  • [34] Estimation of Multiple Faults in Aircraft Gas-turbine Engines
    Sarkar, Soumik
    Rao, Chinmay
    Ray, Asok
    2009 AMERICAN CONTROL CONFERENCE, VOLS 1-9, 2009, : 216 - 221
  • [35] Diagnostics and operational reliability of aircraft gas-turbine engines
    Zhukov, K.A.
    Izvestiya Vysshikh Uchebnykh Zavedenij. Aviatsionnaya Tekhnika, 1993, (02): : 29 - 36
  • [36] United Modeling of Working Process in Aircraft Gas Turbine Engines
    Ivanov, M. Ja.
    Mamaev, B. I.
    Nigmatullin, R. Z.
    PROCEEDINGS OF THE ASME TURBO EXPO 2008, VOL 1, 2008, : 21 - +
  • [37] NICKEL BRAZING HONEYCOMB FOR AIRCRAFT GAS-TURBINE ENGINES
    MCNEILL, WP
    WELDING JOURNAL, 1978, 57 (10) : 32 - 35
  • [38] Seventy-five years at the head of scientific and technical progress in the field of aircraft engines and gas turbine units
    Skibin, V.A.
    Solonin, V.I.
    Vedeshkin, G.K.
    Thermal Engineering, 2005, 52 (11) : 821 - 824
  • [39] Hardware-in-the-loop testing technology for integrated control and condition monitoring systems of aircraft gas turbine engines
    Kulikov G.G.
    Ar'kov V.Yu.
    Abdulnagimov A.I.
    Russian Aeronautics, 2008, 51 (01): : 47 - 52
  • [40] STATISTICAL METHODS OF TECHNICAL CONTROL OF PRODUCTION OF GAS TURBINE ENGINES
    Kochergina, Tatiana V.
    Khokholush, Maria S.
    Guseva, Tatiana I.
    Selezneva, Maria V.
    REVISTA INCLUSIONES, 2020, 7 : 92 - 98