Accelerated mesh sampling for the hyper reduction of nonlinear computational models

Author:

Chapman Todd1,Avery Philip1,Collins Pat2,Farhat Charbel134

Affiliation:

1. Department of Aeronautics and Astronautics; Stanford University; Mail Code 4035 Stanford 94305 CA USA

2. Army Research Laboratory, Aberdeen Proving Ground; Aberdeen MD USA

3. Institute for Computational and Mathematical Engineering; Stanford University; Stanford CA USA

4. Department of Mechanical Engineering; Stanford University; Stanford CA USA

Funder

Army Research Laboratory through the Army High Performance Computing Research Center under Cooperative Agreement

National Defense Science and Engineering Graduate Fellowship

Publisher

Wiley

Subject

Applied Mathematics,General Engineering,Numerical Analysis

Reference45 articles.

1. Model reduction methods based on Krylov subspaces;Freund;Acta Numerica,2003

2. Asymptotic waveform evaluation for timing analysis;Pillage;IEEE Transactions Computer Aided Design,1990

3. Using model-based parameter estimation to increase the physical interpretability and numerical efficiency of computational electromagnetics;Miller;Computer Physics Communications,1991

4. Awe implementation for electromagnetic FEM analysis;Gong;Electronics Letters,1996

5. Awe technique in frequency domain electromagnetics;Erdemli;Journal of Electromagnetic Waves Applications,1999

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