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      Structure-preserving model reduction for dynamical systems with a first integral

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          Abstract

          Since the expense of the numerical integration of large scale dynamical systems is often computationally prohibitive, model reduction methods, which approximate such systems by simpler and much lower order ones, are often employed to reduce the computational effort. In this paper, for dynamical systems with a first integral, new structure-preserving model reduction approaches are presented that yield reduced-order systems while preserving the first integral. We apply energy-preserving integrators to the reduced-order systems and show some numerical experiments that demonstrate the favourable behaviour of the proposed approaches.

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          Most cited references14

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          Principal component analysis in linear systems: Controllability, observability, and model reduction

          B B Moore (1981)
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            Model reduction for compressible flows using POD and Galerkin projection

              • Record: found
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              Galerkin proper orthogonal decomposition methods for parabolic problems

                Author and article information

                Journal
                07 July 2018
                Article
                1807.02624
                e3c43184-a2ba-43e7-bae8-0c5afbab701f

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                math.NA

                Numerical & Computational mathematics
                Numerical & Computational mathematics

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