Multi Step Diakoptics (MSD) is a parallel computation method for solving linear equations. It is used for device simulation, being it executed on a parallel computer. The results show the efficiency of the simulation when the number of nodes that are defined by the five point discretization of semiconductor equations, is over 29.
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Kazuhiro MOTEGI, Shigeyoshi WATANABE, "A Parallel Computation Method in Device Simulation" in IEICE TRANSACTIONS on transactions,
vol. E73-E, no. 11, pp. 1792-1795, November 1990, doi: .
Abstract: Multi Step Diakoptics (MSD) is a parallel computation method for solving linear equations. It is used for device simulation, being it executed on a parallel computer. The results show the efficiency of the simulation when the number of nodes that are defined by the five point discretization of semiconductor equations, is over 29.
URL: https://global.ieice.org/en_transactions/transactions/10.1587/e73-e_11_1792/_p
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@ARTICLE{e73-e_11_1792,
author={Kazuhiro MOTEGI, Shigeyoshi WATANABE, },
journal={IEICE TRANSACTIONS on transactions},
title={A Parallel Computation Method in Device Simulation},
year={1990},
volume={E73-E},
number={11},
pages={1792-1795},
abstract={Multi Step Diakoptics (MSD) is a parallel computation method for solving linear equations. It is used for device simulation, being it executed on a parallel computer. The results show the efficiency of the simulation when the number of nodes that are defined by the five point discretization of semiconductor equations, is over 29.},
keywords={},
doi={},
ISSN={},
month={November},}
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TY - JOUR
TI - A Parallel Computation Method in Device Simulation
T2 - IEICE TRANSACTIONS on transactions
SP - 1792
EP - 1795
AU - Kazuhiro MOTEGI
AU - Shigeyoshi WATANABE
PY - 1990
DO -
JO - IEICE TRANSACTIONS on transactions
SN -
VL - E73-E
IS - 11
JA - IEICE TRANSACTIONS on transactions
Y1 - November 1990
AB - Multi Step Diakoptics (MSD) is a parallel computation method for solving linear equations. It is used for device simulation, being it executed on a parallel computer. The results show the efficiency of the simulation when the number of nodes that are defined by the five point discretization of semiconductor equations, is over 29.
ER -