Title
A fully adaptive rational global Arnoldi method for the model-order reduction of second-order MIMO systems with proportional damping
Abstract
The model order reduction of second-order dynamical multi-input and multi-output (MIMO) systems with proportional damping arising in the numerical simulation of mechanical structures is discussed. Based on finite element modelling the systems describing the mechanical structures are large and sparse, either undamped or proportionally damped. This work concentrates on a new model reduction algorithm for such second order MIMO systems which automatically generates a reduced system approximating the transfer function in the lower range of frequencies. The method is based on the rational global Arnoldi method. It determines the expansion points iteratively. The reduced order and the number of moments matched per expansion point are determined adaptively using a heuristic based on some error estimation. Numerical examples comparing our results to modal reduction and reduction via the rational block Arnoldi method are presented.
Year
DOI
Venue
2016
10.1016/j.matcom.2015.08.017
Mathematics and Computers in Simulation
Keywords
DocType
Volume
Model order reduction,Simulation,Krylov subspace,Global Arnoldi algorithm,Moment matching
Journal
122
Issue
ISSN
Citations 
C
0378-4754
3
PageRank 
References 
Authors
0.41
14
4
Name
Order
Citations
PageRank
Thomas Bonin130.41
Heike Faßbender2154.74
Andreas Soppa340.80
Michael F. Zäh4327.75