K. Khasaia

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In this work, the loop-star and loop-tree basis function approach is applied to multiple, complicated and mixed surface and wire geometries, including a number of separate surfaces (open and close), with handles and holes, a number of wires (open and looped) and surface to wire junctions, being in free space, over ground plane or over/in a layered medium.(More)
In this work, loop-star basis function approach is applied to overcome low frequency breakdown problem for multiple, complicated and mixed surface and wire geometries placed in free space, over ground plane or over/in layered medium. Specifically, it is extended to considering printed structures from low to microwave frequencies. The developed approach is(More)
In this paper, different types of surface impedance boundary conditions (SIBC) are implemented into the Method of Moments (MoM) to simulate arbitrary shape thin 3D material sheets in conjunction with other type geometry elements. These approaches are also extended to low frequency range using the loop-star approach. The developed approaches are validated by(More)
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