DocumentCode :
3081971
Title :
Coupled physical modeling of power cables supplying non-linear loads using finite element method
Author :
Mohammed, O.A. ; Abed, N.Y. ; Liu, S.
Author_Institution :
Florida Int. Univ., Miami, FL, USA
fYear :
2005
fDate :
8-10 April 2005
Firstpage :
55
Lastpage :
59
Abstract :
This paper presents a physical model of power cables connected to nonlinear loads in naval shipboard power systems. Two models were developed, finite element (FE) and abc phase variable model. The terminal behavior of the cable was investigated by coupling the finite element cable´s model and external eclectic circuit simulations. The approach uses time domain techniques and the finite element method. Such a model would allow an efficient representation of the cable under different operating conditions. The abc form of the cable´s model is also built. The inductances are calculated by the energy/current (E/C) perturbation method. Simulations for both a full FE model and representative phase variable model were developed. The terminal behavior comparison of FE model and abc inductance model under nonlinear load condition is performed. The significance of this physical abc model is that it would enable fast dynamic simulations while preserving accuracy.
Keywords :
circuit simulation; finite element analysis; inductance; naval engineering computing; power cables; power system simulation; power systems; ships; time-domain analysis; FE model; abc phase variable model; circuit simulations; coupled physical modeling; dynamic simulations; energy/current perturbation; finite element method; inductances; naval shipboard power systems; nonlinear loads; power cables; terminal behavior; time domain techniques; Circuit simulation; Coupling circuits; Finite element methods; Inductance; Load modeling; Perturbation methods; Power cables; Power supplies; Power system modeling; Power system simulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
SoutheastCon, 2005. Proceedings. IEEE
Print_ISBN :
0-7803-8865-8
Type :
conf
DOI :
10.1109/SECON.2005.1423216
Filename :
1423216
Link To Document :
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