Volume 21 Issue 4
Aug.  2006
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WEI Xun-kai, LI Ying-hong. Aero-engine nonlinear dynamic starting model based on parsimonious genetic programming[J]. Journal of Aerospace Power, 2006, 21(4): 759-766.
Citation: WEI Xun-kai, LI Ying-hong. Aero-engine nonlinear dynamic starting model based on parsimonious genetic programming[J]. Journal of Aerospace Power, 2006, 21(4): 759-766.

Aero-engine nonlinear dynamic starting model based on parsimonious genetic programming

  • Received Date: 2005-09-15
  • Rev Recd Date: 2006-05-31
  • Publish Date: 2006-08-28
  • A novel Parsimonious Genetic Programming(PGP) algorithm for aero-engine starting process optimum data-driven nonlinear dynamic modeling was proposed.First, the method used the traditional GP to generate nonlinear input-output models that were represented in a binary tree structure.Then,Orthogonal Least Squares algorithm(OLS) was applied to estimate the contribution of the tree branches to the accuracy of the model.On this basis,the complex redundant subtrees can be eliminated and the GP's convergence speed is enhanced.Finally,the simple,reliable and accurate linear-in-parameters nonlinear dynamic model can be obtained via GP evolution.Applications to real aeroengine starting process modeling validate that the proposed method can generate more robust and interpretable models.

     

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