International audienceA metamaterial of electromagnetic band gap (EBG) is incorporated to an antenna for frequency reconfigurability is proposed. The EBG consists of two identical unit cells that provide multiple band gaps at 1.88-1.94, 2.25-2.44, 2.67-2.94, 3.52-3.54, and 5.04-5.70 GHz with different EBG configurations. Subsequently, the antenna is incorporated with EBG. The corresponding incorporated structure successfully achieves various reconfigurable frequencies at 1.60, 1.91, 2.41, 3.26, 2.87, 5.21, and 5.54 GHz. The antenna has the potential to be implemented for Bluetooth, Wi-Fi, WiMAX, LTE, and cognitive radio applications
A dual band to wideband reconfigurable pentagon-shaped antenna with EBG unit cell is proposed. A min...
In this paper, a single rectangular patch antenna incorporated with an array of electromagnetic band...
A wideband antenna with band notch function using electromagnetic bandgap (EBG) structure is propose...
International audienceA metamaterial of electromagnetic band gap (EBG) is incorporated to an antenna...
A metamaterial of electromagnetic band gap (EBG) is incorporated to an antenna for frequency reconf...
This paper presents the design of multiband reconfigurable antenna using metamaterial Electromagneti...
International audienceA reconfigurable array antenna operates at lower and higher band of 2.45 GHz a...
A reconfigurable array antenna operates at lower and higher band of 2.45 GHz and 5.8 GHz using Elect...
In this paper, frequency reconfigurable electromagnetic band gap (EBG) structure that integrates wit...
Frequency reconfigurable antennas gain interest especially in future wireless communication systems ...
Electromagnetic bandgap (EBG) structures have become a favorable field of research within the microw...
International audienceThe incorporation of Electromagnetic Band Gap (EBG) unit cells, a type of meta...
This paper presents the design of compact wideband frequency reconfigurable metamaterial (MTM) anten...
In this article, a wideband monopole antenna with band notched reconfigurability is proposed. The an...
A dual band to wideband reconfigurable pentagon-shaped antenna with EBG unit cell is proposed. A min...
A dual band to wideband reconfigurable pentagon-shaped antenna with EBG unit cell is proposed. A min...
In this paper, a single rectangular patch antenna incorporated with an array of electromagnetic band...
A wideband antenna with band notch function using electromagnetic bandgap (EBG) structure is propose...
International audienceA metamaterial of electromagnetic band gap (EBG) is incorporated to an antenna...
A metamaterial of electromagnetic band gap (EBG) is incorporated to an antenna for frequency reconf...
This paper presents the design of multiband reconfigurable antenna using metamaterial Electromagneti...
International audienceA reconfigurable array antenna operates at lower and higher band of 2.45 GHz a...
A reconfigurable array antenna operates at lower and higher band of 2.45 GHz and 5.8 GHz using Elect...
In this paper, frequency reconfigurable electromagnetic band gap (EBG) structure that integrates wit...
Frequency reconfigurable antennas gain interest especially in future wireless communication systems ...
Electromagnetic bandgap (EBG) structures have become a favorable field of research within the microw...
International audienceThe incorporation of Electromagnetic Band Gap (EBG) unit cells, a type of meta...
This paper presents the design of compact wideband frequency reconfigurable metamaterial (MTM) anten...
In this article, a wideband monopole antenna with band notched reconfigurability is proposed. The an...
A dual band to wideband reconfigurable pentagon-shaped antenna with EBG unit cell is proposed. A min...
A dual band to wideband reconfigurable pentagon-shaped antenna with EBG unit cell is proposed. A min...
In this paper, a single rectangular patch antenna incorporated with an array of electromagnetic band...
A wideband antenna with band notch function using electromagnetic bandgap (EBG) structure is propose...