DocumentCode :
2278336
Title :
Automatic order reduction of thermo-electric model for micro-ignition unit
Author :
Bechtold, Tamara ; Rudnyi, Evgenii B. ; Korvink, Jan G.
Author_Institution :
IMTEK, Freiburg Univ., Germany
fYear :
2002
fDate :
2002
Firstpage :
131
Lastpage :
134
Abstract :
In this paper we present an automatic, Krylov-subspace-based order reduction of a thermo-electric model, describing a novel type of micropropulsion device. Model order reduction is essential for achieving easily to evaluate, yet accurate macromodel of the device, and Is needed for simulating both the microthruster array and its driving circuitry. We present numerical simulation results of the full finite element model and the reduced order model that describes the transient thermo-electric behavior. A comparison between Krylov-subspace-based order reduction and order reduction using control theoretical approaches, such as Balanced Truncation Approximation (BTA), has been performed. For the first time a Single-Input-Single-Output (SISO) setup for the reduction algorithm was sufficient to approximate the complete time-dependent temperature distribution of the device.
Keywords :
electric ignition; finite element analysis; microactuators; micromechanical devices; reduced order systems; semiconductor device models; Balanced Truncation Approximation; Single-Input-Single-Output setup; automatic Krylov-subspace-based order reduction; automatic order reduction; driving circuitry; full finite element model; micro-ignition unit; micropropulsion device; microthruster array; model order reduction; order reduction using control theoretical approaches; reduced order model; thermo-electric model; Biomembranes; Circuit simulation; Current; Equations; Finite element methods; Fuels; Ignition; Linear systems; Reduced order systems; Thermal conductivity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Simulation of Semiconductor Processes and Devices, 2002. SISPAD 2002. International Conference on
Print_ISBN :
4-89114-027-5
Type :
conf
DOI :
10.1109/SISPAD.2002.1034534
Filename :
1034534
Link To Document :
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