DocumentCode :
1291655
Title :
An Inverse Scattering Approach to Soft Fault Diagnosis in Lossy Electric Transmission Lines
Author :
Tang, Huaibin ; Zhang, Qinghua
Author_Institution :
INRIA, Rennes, France
Volume :
59
Issue :
10
fYear :
2011
Firstpage :
3730
Lastpage :
3737
Abstract :
In this paper, the diagnosis of soft faults in lossy electric transmission lines is studied through the inverse scattering approach, extending a recently reported study on lossless transmission lines. The considered soft faults are modeled as continuous spatial variations of distributed characteristic parameters of transmission lines. The diagnosis of such faults from reflection and transmission coefficients measured at the ends of a line can be formulated as an inverse problem. The relationship between this inverse problem and the inverse scattering theory has been studied by Jaulent in 1982 through transformations from the telegrapher´s equations of transmission lines to Zakharov-Shabat equations. The present paper clarifies and completes the computation of the theoretic scattering data required by the inverse scattering transform from the practically measured engineering scattering data. The inverse scattering method is then applied to numerically simulated lossy transmission lines to confirm the feasibility of the studied approach to soft fault diagnosis.
Keywords :
electromagnetic wave scattering; fault diagnosis; transmission line theory; Zakharov-Shabat equation; continuous spatial variation; distributed characteristic parameter; inverse scattering approach; lossless transmission lines; lossy electric transmission lines; soft fault diagnosis; telegrapher equation; Equations; Inverse problems; Mathematical model; Power transmission lines; Propagation losses; Scattering; Transmission line measurements; Inverse scattering; Zakharov-Shabat equations; lossy transmission line; soft fault diagnosis; telegrapher´s equations;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2011.2163772
Filename :
5976410
Link To Document :
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