Application of Step Length Technique To An Eigensolution Method for Non-proportionally Damped Systems

Step Length를 이용한 비비례감쇠시스템의 고유치 해석

  • Thanh X. H (Dept. of Civil and Environmental Engrg, KAIST) ;
  • Kim, Byoung-Wan (Dept. of Civil and Environmental Engrg, KAIST) ;
  • Jung, Hyung-Jo (Dept. of Civil and Environmental Engrg., Sejong Univ) ;
  • Lee, In-Won (Dept. of Civil and Environmental Engrg., KAIST)
  • Published : 2003.03.01

Abstract

This paper presents an efficient eigensolution method for non-proportionally damped systems. The proposed method is obtained by applying the accelerated Newton-Raphson technique and the orthonormal condition of the eigenvectors to the linearized form of the quadratic eigenproblem. A step length and a selective scheme are introduced to increase the convergence of the solution. The step length can be evaluated by minimizing the norm of the residual vector using the least square method. While the singularity may occur during factorizing process in other iteration methods such as the inverse iteration method and the subspace iteration method if the shift value is close to an exact eigenvalue, the proposed method guarantees the nonsingularity by introducing the orthonormal condition of the eigenvectors, which can be proved analytically. A numerical example is presented to demonstrate the effectiveness of the proposed method.

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