DocumentCode :
3560709
Title :
Crosstalk Analysis of Multiconductor Transmission Lines Based on Distributed Analytical Representation and Iterative Technique
Author :
Xie, Yan-Zhao ; Canavero, Flavio G. ; Maestri, Tommaso ; Wang, Zan-Ji
Author_Institution :
Dept. of Electron., Politec. Di Torino, Turin, Italy
Volume :
52
Issue :
3
fYear :
2010
Firstpage :
712
Lastpage :
727
Abstract :
This paper provides a novel iterative solution in an analytical (as opposed to numerical) fashion in the frequency domain for crosstalk on multiconductor transmission lines. The proposed method employs the distributed analytical representation of equivalent coupling sources and an iterative technique originated in transverse waveform relaxation. The effects of adjacent lines at each iteration are considered as equivalent distributed sources along the lines rather than lumped sources at the end of the lines or segments. By means of combined voltage waves, these equivalent distributed sources are further implemented analytically in the form of exponential function combinations, leading to a more efficient updating process since the time-consuming numerical integration over the line is avoided. The voltages and currents at the terminals are solved by the Baum-Liu-Tesche equation considering the symmetry of the coupled transmission lines. One major advantage is that the solution at each iteration is obtained analytically and exactly in terms of the per-unit-length parameters, loads, and some predetermined coefficients, which is highly suitable for illustrating the factors that influence the crosstalk. The validation results in a wide range cases show that the proposed method can efficiently handle transmission lines with a large number of conductors and lossy as well as frequency-dependent parameters.
Keywords :
coupled transmission lines; crosstalk; iterative methods; multiconductor transmission lines; Baum-Liu-Tesche equation; combined voltage waves; coupled transmission lines; crosstalk analysis; distributed analytical representation; equivalent coupling sources; exponential function combinations; frequency-dependent parameters; iterative technique; multiconductor transmission lines; time-consuming numerical integration; transverse waveform relaxation; Conductors; Couplings; Crosstalk; Equations; Frequency domain analysis; Iterative methods; Multiconductor transmission lines; Propagation losses; Transmission lines; Voltage; Analytical solution; crosstalk; iterative method; transient analysis; transmission-line modeling; waveform relaxation;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
Conference_Location :
6/1/2010 12:00:00 AM
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2010.2049112
Filename :
5475301
Link To Document :
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