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Empedans sınır koşulu olan rastgele dışbükey yüzeylerdekı yüzey alanlarının hesaplanması

2012
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Advisor: Doç. Dr. Vakur Behçet Ertürk

Abstract (EN)

Due to an increase in the use of conformal antennas in military and commercial applications, the study of surface fields excited by a current distribution on material coated perfect electric conductor (PEC) surfaces is becoming more important. These surface fields are useful in the efficient evaluation of mutual coupling of conformal slot/aperture antennas as well as in the design/analysis ofconformal antennas/arrays which can be mounted on aircrafts, missiles, mobile base stations, etc. On the other hand, impedance boundary condition (IBC) is widely used in surface field problems because it can model a thin material coated (or partially coated) PEC geometry and reduces the complexity of the surface field problem by relating the tangential electric fields to the tangential magneticfields on the surface.In this dissertation, a uniform geometrical theory of diffraction (UTD)-based high frequency asymptotic formulation for the appropriate Green?s function representation pertaining to the surface fields excited by a magnetic current source located on an arbitrary smooth convex surface with an IBC is developed. In thecourse of obtaining the final UTD-based Green?s function representation, surface field expressions of cylinder and sphere geometries are written in normal, binormal, tangent [(n,b,t)] coordinates and their important parameters such as the divergence factor, the Fock parameter and Fock type integrals are generalizedaccording to the locality of high frequency wave propagation. The surface field expressions for the arbitrary convex impedance surface are then written by blending the sphere and cylinder solutions through blending functions, which are introduced heuristically.

Author

Dr. Burak Alişan

How to Cite

Burak Alişan (Doctorate thesis). Empedans sınır koşulu olan rastgele dışbükey yüzeylerdekı yüzey alanlarının hesaplanması, 2012, Bilkent University.

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