DocumentCode
2096455
Title
Electromagnetic calculations for large bodies of translation
Author
Davis, G.
Author_Institution
Res. & Dev. Div., Lockheed Missiles & Space Co. Inc., Sunnyvale, CA, USA
Volume
2
fYear
1995
fDate
18-23 June 1995
Abstract
Summary form only given. A canonical geometry of great interest is the body of translation. A body of translation is defined as a geometry that has a constant cross-sectional shape and is translated over a finite distance. A computer program named GODOT has been written which evaluates the electromagnetic properties of a general dielectric body of translation using moment-method techniques. General geometries in the presence of the body of translation may also be solved. General geometries are modeled with the Rao triangular basis functions, while the body of translation is modeled with a rectangular generalization of these basis functions. The rectangular basis function conveniently segments the body of translation into a set of identical cells along the translation of the body. New algorithms evaluate the impedance matrix by converting all surface integrals over the basis functions into line integrals. These methods have been implemented for both the electric and magnetic fields from the triangular and rectangular basis functions. These algorithms are highly accurate and as speedy as previous techniques. The impedance matrix, which is in general block Toeplitz, is inverted using a novel and highly efficient block Toeplitz matrix solver. This new algorithm is compared to previous methods such as the Levinson recursion and the preconditioned biconjugate gradient techniques. A number of examples are presented showing the capability of this new computer program. The timing requirements for this algorithm is also discussed.
Keywords
Toeplitz matrices; dielectric properties; electric fields; electric impedance; electrical engineering; electrical engineering computing; electromagnetism; integral equations; magnetic fields; method of moments; GODOT computer program; Rao triangular basis functions; block Toeplitz matrix; constant cross-sectional shape; dielectric body of translation; electric fields; electromagnetic calculations; electromagnetic properties; finite distance; impedance matrix; large bodies of translation; line integrals; magnetic fields; moment method techniques; rectangular basis function; surface integrals; timing requirements; Concurrent computing; Dielectrics; Geometry; Magnetic fields; Matrix converters; Missiles; Research and development; Shape; Solid modeling; Surface impedance;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas and Propagation Society International Symposium, 1995. AP-S. Digest
Conference_Location
Newport Beach, CA, USA
Print_ISBN
0-7803-2719-5
Type
conf
DOI
10.1109/APS.1995.530191
Filename
530191
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