A Miniaturized Dual-Band FSS with Closely Spaced Resonances Using 2.5-Dimension Structure

Author:

Yin Weiyang,Zhang Hou,Zhong Tao,Min Xueliang

Abstract

Abstract Using 2.5-dimension structure, a novel miniaturized dual-band FSS with closely spaced resonances is proposed in the paper. The special design of the geometry contributes to two closely spaced resonances at 1.69 GHz and 2.16 GHz respectively and the frequency ratio of upper to the lower resonant frequency is 1.27. Besides, the two bands can be controlled individually by varying corresponding parameters. The size of the proposed FSS is only 0.057λ0, where the λ0 represents free space wavelength at lower resonant band. Furthermore, the simulation results show the proposed FSS exhibits stable response with different incident angles and polarizations. To understand the design better, the distribution of surface current is analyzed to explain the operating mechanism of the proposed FSS. Finally, the proposed FSS is fabricated and the measurement results are in accordance with the simulation results.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering

Reference30 articles.

1. A novel miniaturized frequency selective surface with stable resonance;IEEE Antennas and Wireless Propagation Letters,2014

2. Electromagnetic interference on medical equipment by low power mobile telecommunication systems;IEEE Transactions on Electromagnetic Compatibility,2000

3. A dual-frequency miniaturized-element FSS with closely located resonances;IEEE Antennas and Wireless Propagation Letters,2013

4. A novel miniaturized frequency selective surface with stable resonance;IEEE Antennas and Wireless Propagation Letters,2014

5. A outstanding miniaturized frequency selective surface based on convoluted interwoven element;Progress in Electromagnetics Research Letter,2017

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