In this paper, a simultaneous application of geometric modification on patch elements and electromagnetic band gap (EBG) electromagnetic bandgap structures (hybrid method) has been suggested for 3.5 GHz wireless communication applications, to minimize the mutual coupling between radiating elements of microstrip array antennas. The suggested EBG slotted structure is composed of a one square ring and three squares placed on Rogers RO3010 having 10.2 and h=1.27 mm which presents respectively its dielectric constant and thickness. In this approach, the patch elements are geometrically modified, while also employing EBG structures, formed by four EBG cells, placed between the array elements at a near distance. The modification of the geometry of...
A novel design of EBG is used to replace the mushroom like EBG for surrounding the array patch anten...
In this paper, a mutual coupling study is conducted between two-element array antenna on dual substr...
Electromagnetic band gap (EBG) technology has become a significant breakthrough in the radio frequen...
In this paper, a simultaneous application of geometric modification on patch elements and electromag...
The main objective of this research is to design, model and implement several antenna geometries us...
When the number of antenna elements is placed in forming the arrays, mutual coupling between the ant...
Reducing mutual coupling is a key research area in design of compact microstrip antennas arrays. To ...
An important issue in antenna array design is reduction of mutual coupling. In square microstrip ant...
This paper presents the simultaneous application of Minkowski fractal geometry and EBG structures fo...
A 2D electromagnetic band gap (EBG) structure is designed on the ground plane of 1×2 rectangular pat...
This paper presents a printed rectangular slot microstrip antenna array of two elements based on an ...
In this paper, a mutual coupling study is conducted between two-element array antenna on dual substr...
This report focus on the applying EBG to reduce mutual coupling between patch elements. Dumbbell sha...
In this paper, we will discuss the concerns of a microstrip two patch antenna system. Coupling of th...
Key research area is improving band width and gain in design of microstrip patch antennas. reducing ...
A novel design of EBG is used to replace the mushroom like EBG for surrounding the array patch anten...
In this paper, a mutual coupling study is conducted between two-element array antenna on dual substr...
Electromagnetic band gap (EBG) technology has become a significant breakthrough in the radio frequen...
In this paper, a simultaneous application of geometric modification on patch elements and electromag...
The main objective of this research is to design, model and implement several antenna geometries us...
When the number of antenna elements is placed in forming the arrays, mutual coupling between the ant...
Reducing mutual coupling is a key research area in design of compact microstrip antennas arrays. To ...
An important issue in antenna array design is reduction of mutual coupling. In square microstrip ant...
This paper presents the simultaneous application of Minkowski fractal geometry and EBG structures fo...
A 2D electromagnetic band gap (EBG) structure is designed on the ground plane of 1×2 rectangular pat...
This paper presents a printed rectangular slot microstrip antenna array of two elements based on an ...
In this paper, a mutual coupling study is conducted between two-element array antenna on dual substr...
This report focus on the applying EBG to reduce mutual coupling between patch elements. Dumbbell sha...
In this paper, we will discuss the concerns of a microstrip two patch antenna system. Coupling of th...
Key research area is improving band width and gain in design of microstrip patch antennas. reducing ...
A novel design of EBG is used to replace the mushroom like EBG for surrounding the array patch anten...
In this paper, a mutual coupling study is conducted between two-element array antenna on dual substr...
Electromagnetic band gap (EBG) technology has become a significant breakthrough in the radio frequen...