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Optimization over symmetric cones (1999)

by M V Nayakkankuppam
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Numerical Evaluation of SBmethod

by Christoph Helmberg, Christoph Helmberg - Mathematical Programming , 2001
"... We report numerical results for SBmethod -- a publically available implementation of the spectral bundle method -- applied to the 7th DIMACS challenge test sets that are semidefinite relaxations of combinatorial optimization problems. The performance of the code is heavily influenced by parameters t ..."
Abstract - Cited by 7 (0 self) - Add to MetaCart
We report numerical results for SBmethod -- a publically available implementation of the spectral bundle method -- applied to the 7th DIMACS challenge test sets that are semidefinite relaxations of combinatorial optimization problems. The performance of the code is heavily influenced by parameters that control bundle update and eigenvalue computation.

Cutting Plane Methods and Subgradient Methods

by John E. Mitchell
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Research Reports on

by Mathematical And Computing, Mituhiro Fukuda, Bastiaan J. Braams, Michael L. Overton, Jerome K. Percus, Makoto Yamashita, Zhengji Zhao, Mituhiro Fukuda, Bastiaan J. Braams, Maho Nakata, Michael L. Overton, K. Percus, Makoto Yamashita, Zhengji Zhao , 2005
"... Employing the variational approach having the two-body reduced density matrix (RDM) as variables to compute the ground state energies of atomic-molecular systems has been a long time dream in electronic structure theory in chemical physics/physical chemistry. Realization of the RDM approach has b ..."
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Employing the variational approach having the two-body reduced density matrix (RDM) as variables to compute the ground state energies of atomic-molecular systems has been a long time dream in electronic structure theory in chemical physics/physical chemistry. Realization of the RDM approach has benefited greatly from recent developments in semidefinite programming (SDP). We present the actual state of this new application of SDP as well as the formulation of these SDPs, which can be arbitrarily large. Numerical results using parallel computation on high performance computers are given. The RDM method has several advantages including robustness and provision of high accuracy compared to traditional electronic structure methods, although its computational time and memory consumption are still extremely large.

Large-scale semidefinite programs . . .

by Mituhiro Fukuda, Bastiaan J. Braams, Maho Nakata, Michael L. Overton, Jerome K. Percus, Makoto Yamashita, Zhengji Zhao , 2005
"... Employing the variational approach having the two-body reduced density matrix (RDM) as variables to compute the ground state energies of atomic-molecular systems has been a long time dream in electronic structure theory in chemical physics/physical chemistry. Realization of the RDM approach has b ..."
Abstract - Add to MetaCart
Employing the variational approach having the two-body reduced density matrix (RDM) as variables to compute the ground state energies of atomic-molecular systems has been a long time dream in electronic structure theory in chemical physics/physical chemistry. Realization of the RDM approach has benefited greatly from recent developments in semidefinite programming (SDP). We present the actual state of this new application of SDP as well as the formulation of these SDPs, which can be arbitrarily large. Numerical results using parallel computation on high performance computers are given. The RDM method has several advantages including robustness and provision of high accuracy compared to traditional electronic structure methods, although its computational time and memory consumption are still extremely large.
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