This paper presents a numerical study of the behavior of a planar version of traditional soft surfaces. The application of these structures, although limited to one direction, can be enough for many applications where the directions along which the waves must be suppressed are clearly defined. The proposed soft surface is compact and its design is flexible due to the different parameters of the structure. This work analyzes the effects of all these parameters in both the position and size of the bandgap or stop band. Also a practical application to reduce mutual coupling in patch antennas is presented. The work is supported by experimental results
International audienceThis paper presents a solution to extend the scanning range of a phased patch ...
Abstract—In this paper, a stacked ring-patch two layer planar artificial substrate is analyzed numer...
In the last decades much attention has been paid to the design of high-performance antennas. Accurat...
The use of planar soft surfaces to reduce mutual coupling in a new type of planar inverted-F antenna...
Published by and copyright of The Electromagnetics Academy. The definitive version of this article ...
This thesis deals with the investigation of the mechanisms of the formation of mutual coupling and i...
International audienceA method of loaded patch antennas with shorting pins and erected walls in betw...
Abstract ⎯ The radiation performance of patch antennas on a large-size substrate can be significantl...
Results of further reduction of mutual coupling between Wang-shaped patch antennas are presented in ...
Abstract—In this paper, a numerical analysis of a periodic planar structure using a uniaxial substra...
In this paper the quality of a technique to compensate for mutual coupling (and other phenomena) in ...
Reducing mutual coupling is a key research area in design of compact microstrip antennas arrays. To ...
In this paper, a meta-surface is developed as an effective solution for reducing mutual coupling bet...
Electromagnetic Band Gap (EBG) based on Frequency Selective Surfaces (FSS) [1] are one type of metam...
Phased array antennas require a distance of the array elements to be smaller than half a wavelength ...
International audienceThis paper presents a solution to extend the scanning range of a phased patch ...
Abstract—In this paper, a stacked ring-patch two layer planar artificial substrate is analyzed numer...
In the last decades much attention has been paid to the design of high-performance antennas. Accurat...
The use of planar soft surfaces to reduce mutual coupling in a new type of planar inverted-F antenna...
Published by and copyright of The Electromagnetics Academy. The definitive version of this article ...
This thesis deals with the investigation of the mechanisms of the formation of mutual coupling and i...
International audienceA method of loaded patch antennas with shorting pins and erected walls in betw...
Abstract ⎯ The radiation performance of patch antennas on a large-size substrate can be significantl...
Results of further reduction of mutual coupling between Wang-shaped patch antennas are presented in ...
Abstract—In this paper, a numerical analysis of a periodic planar structure using a uniaxial substra...
In this paper the quality of a technique to compensate for mutual coupling (and other phenomena) in ...
Reducing mutual coupling is a key research area in design of compact microstrip antennas arrays. To ...
In this paper, a meta-surface is developed as an effective solution for reducing mutual coupling bet...
Electromagnetic Band Gap (EBG) based on Frequency Selective Surfaces (FSS) [1] are one type of metam...
Phased array antennas require a distance of the array elements to be smaller than half a wavelength ...
International audienceThis paper presents a solution to extend the scanning range of a phased patch ...
Abstract—In this paper, a stacked ring-patch two layer planar artificial substrate is analyzed numer...
In the last decades much attention has been paid to the design of high-performance antennas. Accurat...