Applications of AMC-based impedance surfaces

Author:

Balanis Constantine A.,Amiri Mikal Askarian,Modi Anuj Y.,Pandi Sivaseetharaman,Birtcher Craig R.

Abstract

The recent and major enhancements of artificial magnetic conductor (AMC) and their applications namely RCS reduction, low-profile antennas and holographic leaky wave antennas are reviewed. Full-wave simulations are compared to measurements of fabricated models, and a good agreement is attained. All of the measurement were conducted in the Arizona State University electromagnetic anechoic chamber (EMAC).

Publisher

EDP Sciences

Subject

Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference45 articles.

1. Sievenpiper D., High-Impedance Electromagnetic Surfaces, Ph.D. dissertation, (Dept. Elect. Eng., Univ. California, Los Angeles, Los Angeles, CA, USA, 1999).

2. Tretyakov S., Analytical modeling in applied electromagnetics, (Artech House, Boston, 2003).

3. Simple and Accurate Analytical Model of Planar Grids and High-Impedance Surfaces Comprising Metal Strips or Patches

4. Quasi-Analytical Modeling of Transmission/Reflection in Strip/Slit Gratings Loaded With Dielectric Slabs

5. Reflection phase characterizations of the EBG ground plane for low profile wire antenna applications

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