This paper presents design of novel uniplanar Compact Electromagnetic bandgap (EBG) structure and its application in enhancement of isolation in H-Plane of MIMO antenna system for WLAN (5.8 GHz). Isolation enhancement or coupling reduction of 5.6 dB is achieved by etching out the proposed EBG structure from the ground plane of microstrip patch MIMO antenna. Center to center distance is reduced to 0.45λo due to compactness of EBG. A metal line strip between radiating patches is used for further reduction in mutual coupling at 5.8 GHz. There is significant enhancement of 16.2 dB in isolation due to the introduction of metal line strip. Hence the total 21.8 dB reduction in mutual coupling is achieved and this coupling reduction is also verifie...
This study proposed a compact microstrip antenna for 5.4 GHz WLAN/HIPERLAN applications, which achie...
A 2D electromagnetic band gap (EBG) structure is designed on the ground plane of 1×2 rectangular pat...
At present, electromagnetic band gap (EBG) materials are rapidly advancing in electromagnetic (EM) ...
This paper presents a printed rectangular slot microstrip antenna array of two elements based on an ...
A compact 4 × 4 UWB-MIMO antenna with rejected WLAN band employing an electromagnetic bandgap (EBG) ...
In this paper, a compact UWB MIMO antenna with enhanced isolation for WBAN applications is proposed....
A method to significantly improve the isolation of multiple-input-multiple-output (MIMO) antenna is ...
A dual-band Multiple Input Multiple Output (MIMO) antenna system with enhanced isolation for LTE and...
A compact MIMO antenna with isolation enhancement for WLAN band (2.4-2.497 GHz) is proposed. The pro...
Abstract High isolation between massive MIMO antenna elements is one of the important parameters tha...
A novel design of an electromagnetic bandgap (EBG) structure based on the uniplanar compact EBG (UCE...
A compact dual-wideband multiple-input multiple-output (MIMO)antenna with a size of 36 X 22 mm(2) is...
Electromagnetic bandgap (EBG) structures can help in the reduction of mutual coupling by their capab...
This paper deals with the design of a Multiple Input Multiple Output (MIMO) antenna for UWB applicat...
The main objective of this research is to design, model and implement several antenna geometries us...
This study proposed a compact microstrip antenna for 5.4 GHz WLAN/HIPERLAN applications, which achie...
A 2D electromagnetic band gap (EBG) structure is designed on the ground plane of 1×2 rectangular pat...
At present, electromagnetic band gap (EBG) materials are rapidly advancing in electromagnetic (EM) ...
This paper presents a printed rectangular slot microstrip antenna array of two elements based on an ...
A compact 4 × 4 UWB-MIMO antenna with rejected WLAN band employing an electromagnetic bandgap (EBG) ...
In this paper, a compact UWB MIMO antenna with enhanced isolation for WBAN applications is proposed....
A method to significantly improve the isolation of multiple-input-multiple-output (MIMO) antenna is ...
A dual-band Multiple Input Multiple Output (MIMO) antenna system with enhanced isolation for LTE and...
A compact MIMO antenna with isolation enhancement for WLAN band (2.4-2.497 GHz) is proposed. The pro...
Abstract High isolation between massive MIMO antenna elements is one of the important parameters tha...
A novel design of an electromagnetic bandgap (EBG) structure based on the uniplanar compact EBG (UCE...
A compact dual-wideband multiple-input multiple-output (MIMO)antenna with a size of 36 X 22 mm(2) is...
Electromagnetic bandgap (EBG) structures can help in the reduction of mutual coupling by their capab...
This paper deals with the design of a Multiple Input Multiple Output (MIMO) antenna for UWB applicat...
The main objective of this research is to design, model and implement several antenna geometries us...
This study proposed a compact microstrip antenna for 5.4 GHz WLAN/HIPERLAN applications, which achie...
A 2D electromagnetic band gap (EBG) structure is designed on the ground plane of 1×2 rectangular pat...
At present, electromagnetic band gap (EBG) materials are rapidly advancing in electromagnetic (EM) ...