Automatic Generation of Compact Electro-Thermal Models for Semiconductor Devices(<Special Issue>the IEEE International Conference on SISPAD '02)
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概要
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A high power dissipation density in today's miniature electronic/mechanical systems makes on-chip thermal management very important. In order to achieve quick to evaluate, yet accurate electro-thermal models, needed for the thermal management of microsystems, a model order reduction is necessary. In this paper, we present an automatic, Krylov-subspace-based order reduction of a electro-thermal model, which we illustrate by a novel type of micropropulsion device. Numerical simulation results of the full finite element model and the reduced order model, that describes the transient electro-thermal behavior, are presented. A comparison between Krylov-subspace-based order reduction, order reduction using control theoretical approaches and commercially available reduced order modeling has been performed. A Single-Input-Single-Output setup for the Arnoldi reduction algorithm was proved to be sufficient to accurately represent the complete time-dependent temperature distribution of the device.
- 社団法人電子情報通信学会の論文
- 2003-03-01
著者
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Korvink Jan
Imtek University Of Freiburg
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Rudnyi Evgenii
Imtek University Of Freiburg
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BECHTOLD Tamara
IMTEK,University of Freiburg
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Bechtold Tamara
Imtek University Of Freiburg