An Active High Impedance Surface for Low Profile Tunable and Steerable Antennas
arXiv:0901.2748 · doi:10.1109/LAWP.2008.2006070
Abstract
In this letter, an approach for designing a tunable and steerable antenna is presented. The antenna model is based on a wideband bow-tie radiating element mounted above an active Artificial Magnetic Conductor (AMC). The AMC geometry consists of a Frequency Selective Surface (FSS) printed on a thin grounded dielectric slab in which some chip-set varactor diodes are placed between the metallic elements and the backing plane through vias. The resulting antenna can be tuned over the S-Band by simply changing all varactor capacitances through an appropriate biasing voltage. Moreover, this structure can operate a beam scanning over each working frequency by applying an appropriate biasing voltage to the active elements of the AMC surface in accordance to leaky radiation principles. The low profile active antenna is characterized by an overall thickness of 5.32 mm, which corresponds to approximately lambda/24 at the centre of the operating band.
4 pages, 13 figures,
References in corpus (1)
Cited by in corpus (4)
- Sidelobe Canceling for Optimization of Reconfigurable Holographic Metamaterial Antenna
- On the Bandwidth of High-Impedance Frequency Selective Surfaces
- A multi-functional reconfigurable metasurface: Electromagnetic design accounting for fabrication aspects
- Electromagnetic Model of Reflective Intelligent Surfaces