In this paper, reconfigurable metamaterial structure at millimeter wave frequency range was designed and simulated for a future fifth generation (5G) mobile-phone beam switching applications. The new proposed structure was composed of a bridge-shaped resonator (BSR) in the front face and strip line at the back face of the unit cell which operates at 28GHz. First, nonreconfigurable low loss BSR unit cell was designed and subsequently, the reconfigurability was achieved using four switches formed in the gaps of the structure. The proposed structure achieves the lowest loss and almost full transmission among its counterparts by -0.06dB (0.99 in linear scale). To demonstrate the reconfigurability of the metamaterial, the reflection and transmis...
International audienceA metamaterial of electromagnetic band gap (EBG) is incorporated to an antenna...
In this paper, an ultrathin planar nonlinear metamaterial slab is designed and simulated. Nonlineari...
Abstract: Wireless communication technology experienced drastic developments during the last few dec...
In this paper, reconfigurable metamaterial structure at millimeter wave frequency range was designed...
In this paper, a new refractive index reconfigurable metamaterial structure at millimeter wave (MMW)...
A new metamaterial structure with a reconfigurable refractive index for beam tilting in future fifth...
Two novel millimeter-wave (MMW) metamaterials (MTMs) unit cells operate at 28 GHz for a future fifth...
In this research, a reconfigurable metamaterial (MM) structure was designed using a millimeter-wave...
This paper is under in-depth investigation due to suspicion of possible plagiarism on a high similar...
International audienceA reconfigurable metasurface unit-cell is investigated in order to obtain a 0 ...
The design of the millimetre-wave (MMW) metamaterials (MMs) unit cell operates at 28 GHz is presente...
International audienceIn this paper, we propose a metamaterial (MTM) structure with a reconfigurable...
In this paper, we propose a metamaterial (MTM) structure with a reconfigurable property designed to ...
Two novel millimeter-wave (MMW) metamaterials (MTMs) unit cells operate at 28 GHz for a future fifth...
This study proposes a compact design of frequency-reconfigurable antenna array for fifth generation ...
International audienceA metamaterial of electromagnetic band gap (EBG) is incorporated to an antenna...
In this paper, an ultrathin planar nonlinear metamaterial slab is designed and simulated. Nonlineari...
Abstract: Wireless communication technology experienced drastic developments during the last few dec...
In this paper, reconfigurable metamaterial structure at millimeter wave frequency range was designed...
In this paper, a new refractive index reconfigurable metamaterial structure at millimeter wave (MMW)...
A new metamaterial structure with a reconfigurable refractive index for beam tilting in future fifth...
Two novel millimeter-wave (MMW) metamaterials (MTMs) unit cells operate at 28 GHz for a future fifth...
In this research, a reconfigurable metamaterial (MM) structure was designed using a millimeter-wave...
This paper is under in-depth investigation due to suspicion of possible plagiarism on a high similar...
International audienceA reconfigurable metasurface unit-cell is investigated in order to obtain a 0 ...
The design of the millimetre-wave (MMW) metamaterials (MMs) unit cell operates at 28 GHz is presente...
International audienceIn this paper, we propose a metamaterial (MTM) structure with a reconfigurable...
In this paper, we propose a metamaterial (MTM) structure with a reconfigurable property designed to ...
Two novel millimeter-wave (MMW) metamaterials (MTMs) unit cells operate at 28 GHz for a future fifth...
This study proposes a compact design of frequency-reconfigurable antenna array for fifth generation ...
International audienceA metamaterial of electromagnetic band gap (EBG) is incorporated to an antenna...
In this paper, an ultrathin planar nonlinear metamaterial slab is designed and simulated. Nonlineari...
Abstract: Wireless communication technology experienced drastic developments during the last few dec...