DocumentCode :
1106450
Title :
Hand-Assembled Cable Bundle Modeling for Crosstalk and Common-Mode Radiation Prediction
Author :
Sun, Shishuang ; Liu, Geping ; Drewniak, James L. ; Pommerenke, David J.
Author_Institution :
Altera Corp., San Jose
Volume :
49
Issue :
3
fYear :
2007
Firstpage :
708
Lastpage :
718
Abstract :
A statistical cable bundle model is developed to account for the random disturbance of the wire positions along hand-assembled cable bundles. The nonuniform random bundles are modeled as n-cascaded segments of a uniform multiconductor transmission line. At each section, all wire positions are disturbed with random numbers obeying a Gaussian distribution. In addition, a spline interpolation function is used to improve the continuity of wires winding along the bundle. The wire crosstalk and the common-mode (CM) current distribution along the bundle can be calculated with simulation program with integrated circuit emphasis (SPICE)-like solvers. By injecting the CM current along the bundle into a full-wave tool, e.g., finite-difference time domain (FDTD), as impressed current sources, the system-level electromagnetic emissions from the cable bundles can be predicted. The model has been experimentally validated with a controlled laboratory setup.
Keywords :
Gaussian distribution; Gaussian processes; cables (electric); electromagnetic interference; finite difference methods; interpolation; multiconductor transmission lines; FDTD; Gaussian distribution; common-mode current distribution; common-mode radiation prediction; finite-difference time domain; hand-assembled cable bundle modeling; nonuniform random bundles; random disturbance; spline interpolation function; statistical cable bundle model; uniform multiconductor transmission line; wire crosstalk; Crosstalk; Current distribution; Finite difference methods; Gaussian distribution; Interpolation; Multiconductor transmission lines; Power cables; Predictive models; Spline; Wire; Cable bundles; common-mode (CM) current; crosstalk; electromagnetic interference (EMI); multiconductor transmission line (MTL); statistical;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2007.897142
Filename :
4294141
Link To Document :
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