DocumentCode :
1315527
Title :
Efficient Method for Time-Domain Analysis of Lossy Nonuniform Multiconductor Transmission Line Driven by a Modulated Signal Using FDTD Technique
Author :
Afrooz, Kambiz ; Abdipour, Abdolali
Author_Institution :
Dept. of Electr. Eng., Amirkabir Univ. of Technol. (Tehran Polytech.), Tehran, Iran
Volume :
54
Issue :
2
fYear :
2012
fDate :
4/1/2012 12:00:00 AM
Firstpage :
482
Lastpage :
494
Abstract :
In this paper, an unconditionally stable finite-difference time-domain algorithm is presented for analysis of lossy nonuniform multiconductor transmission line (MTL). The results of the proposed algorithm are confirmed by those of the Leap-Frog algorithm. The unconditionally stable algorithm alone cannot decrease the time consumption, especially when the MTL is excited by modulated signals. The complex phasor transformation approach is used to separate the modulating signal from the carrier signal when an MTL is excited by a modulated signal. A new set of equations is generated using this approach. The new equations are based on the modulating signal, and the carrier signal is eliminated in these equations. The derived equations are solved by Leap-Frog algorithm, and the results confirm the accuracy of these equations. Finally, the proposed equations are solved by the unconditionally stable algorithm at several temporal step sizes. The results indicate that this method has much lower CPU time compared with the conventional method and also has a very good accuracy.
Keywords :
finite difference time-domain analysis; modulation; multiconductor transmission lines; signal denoising; FDTD technique; carrier signal elimination; leap-frog algorithm; lossy nonuniform multiconductor transmission line analysis; modulated signal; phasor transformation approach; time consumption; time-domain analysis; unconditionally stable finite-difference time-domain algorithm; Equations; Finite difference methods; Mathematical model; Numerical stability; Stability analysis; Time domain analysis; Transmission line matrix methods; Complex phasor transformation; finite-difference time-domain (FDTD); lossy nonuniform multiconductor transmission line (MTL); modulated signal; unconditionally stable algorithm;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2011.2161765
Filename :
6011676
Link To Document :
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