DocumentCode :
1371237
Title :
New Behavioral Modeling for DC Motor Armatures Applied to Automotive EMC Characterization
Author :
Kahoul, Rami ; Azzouz, Yacine ; Marchal, Philippe ; Mazari, Bélahcène
Author_Institution :
Res. Inst. for Electron. Embedded Syst., St. Etienne du Rouvray, France
Volume :
52
Issue :
4
fYear :
2010
Firstpage :
888
Lastpage :
901
Abstract :
This paper presents a high-frequency modeling method of direct current motor armatures dedicated to low-voltage automotive applications. The proposed model is based on a behavioral approach, which permits to reproduce impedance measurements. It takes into account some physical features and phenomena related to the motor armature. The influence of the skin effect in the windings, the magnetic field penetration in the core, and the armature manufacturing systematic error in the impedance evolution is considered with this model. The model was first developed from that of a basic iron core inductor and improved afterward in order to cover a high frequency range (from dc up to 1 GHz). Several identification methods were used to quantify the model parameters. Furthermore, the model was associated to a noise-current generator in order to estimate the conducted disturbances. These last ones are emitted by the motor in the RF range (100 kHz-108 MHz), knowing the operating conditions of current intensity, voltage, and speed.
Keywords :
DC motors; automobiles; electromagnetic compatibility; DC motor armatures; automotive EMC characterization; direct current motor armatures; frequency 100 kHz to 108 MHz; high-frequency modeling method; low-voltage automotive applications; Automotive engineering; Capacitance; DC motors; Electromagnetic compatibility; Impedance measurement; Skin effect; DC motor; Norton’s theorem; electromagnetic compatibility (EMC); parametric identification algorithms; skin effect; stray capacitances;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2010.2057430
Filename :
5623282
Link To Document :
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