• DocumentCode
    724482
  • Title

    Multi-stage algorithm of estimation and fault diagnose for closed-loop MIMO gas turbine engine systems

  • Author

    Ren Jia ; Ma Hong-jun

  • Author_Institution
    Lab. of Aeronaut. Struct. Impact Dynamics, AVIC Aircraft Strength Res. Inst., Xi´an, China
  • fYear
    2015
  • fDate
    23-25 May 2015
  • Firstpage
    4823
  • Lastpage
    4828
  • Abstract
    Aircraft engines have characteristics with complex structure and prone to fault, in addition, conventional modeling methods based on mechanism analysis has troubles of complicated process and low operational efficiency. To solve these problems, an algorithm was proposed for identification and fault diagnose based on data, which could be used in closed-loop MIMO aircraft engine systems. Using the algorithm, external input and output data of running closed-loop system measured online by sensors and data acquisition system were needed without understanding complexity construction and operation process. By choosing appropriate auxiliary parameters, auxiliary models were established. Then time delay was calculated by determining the order of the auxiliary model, parameters of forward channels and feedback channels were estimated by multi-stage least square algorithm. An illustrative example of biaxial gas turbine engine system was given for simulation. At the same time, the algorithm can be used for diagnosing gas path fault when the forgetting factor was changing by convergence of recognition result, the fault values can be got at last. Finally, two kinds of important characteristics were introduced, about importance and principium of selecting forgetting factor and excluding disturb of noises by distinguish it by the result of fault.
  • Keywords
    MIMO systems; aerospace engines; aircraft; closed loop systems; data acquisition; delay systems; fault diagnosis; feedback; gas turbines; least squares approximations; sensors; aircraft engines; auxiliary models; auxiliary parameters; biaxial gas turbine engine system; closed-loop MIMO aircraft engine systems; closed-loop MIMO gas turbine engine systems; data acquisition system; fault identification; fault values; feedback channels; forgetting factor; forward channels; gas path fault diagnosis; multistage least square algorithm; sensors; time delay; Algorithm design and analysis; Delay effects; Engines; Fault diagnosis; MIMO; Mathematical model; Turbines; Aircraft engine; MIMO system; auxiliary model; closed-loop identification; fault diagnose; least square;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control and Decision Conference (CCDC), 2015 27th Chinese
  • Conference_Location
    Qingdao
  • Print_ISBN
    978-1-4799-7016-2
  • Type

    conf

  • DOI
    10.1109/CCDC.2015.7162779
  • Filename
    7162779