The utilization of additive manufacturing (AM) to engineer the permittivity profile of dielectric resonator antennas (DRAs) is considered. For the first time, the capabilities of AM are exploited to create continuously swept permittivity profiles and applied to cylindrical DRAs. The spatial variant lattices (SVL) synthesis algorithm is implemented to create the desired permittivity profiles from a single material, and resulting geometries are manufactured using a high-permittivity material in a fused deposition modeling AM process. Three individual antennas for global navigation satellite system bands are designed and manufactured, two inhomogeneous DRAs with continuous permittivity profiles along the radial and vertical axis, and on...
The realization of flexible and conformable antennas, suitable for IoT applications, is still a chal...
Additive manufacturing offers new possibilities in innovative antennas and microwave components. In ...
Additive Manufacturing holds significant promise for microwave component design, enabling the produc...
Additive manufacturing (AM) techniques are used increasingly for the direct fabrication of microwave...
Transformation optics (TO) allows the design of new optical devices for the novel manipulation of el...
In this research, stereolithography (SLA) based additive manufacturing (AM) has been investigated as...
Microstrip patch antennas with a tunable radiofrequency (RF) response are a great candidate for addi...
Excitation of high-order modes is an essential feature for specific applications that require high g...
Direct digital manufacturing (DDM) is an rapidly evolving fabrication method to prototype, and poten...
This paper investigates the concept of creating substrates with heterogeneous dielectric properties....
International audienceIn this paper, we propose a procedure to design a uniaxial anisotropic dielect...
This dissertation investigates the application of additive manufacturing to novel microwave componen...
In this publication, the use of a dielectric paste for dielectric resonator antenna (DRA) design is ...
Additive manufacturing has been combined with commercially available RF materials to synthesize comp...
Introduction Dielectric resonators using high-permittivity materials were originally developed for m...
The realization of flexible and conformable antennas, suitable for IoT applications, is still a chal...
Additive manufacturing offers new possibilities in innovative antennas and microwave components. In ...
Additive Manufacturing holds significant promise for microwave component design, enabling the produc...
Additive manufacturing (AM) techniques are used increasingly for the direct fabrication of microwave...
Transformation optics (TO) allows the design of new optical devices for the novel manipulation of el...
In this research, stereolithography (SLA) based additive manufacturing (AM) has been investigated as...
Microstrip patch antennas with a tunable radiofrequency (RF) response are a great candidate for addi...
Excitation of high-order modes is an essential feature for specific applications that require high g...
Direct digital manufacturing (DDM) is an rapidly evolving fabrication method to prototype, and poten...
This paper investigates the concept of creating substrates with heterogeneous dielectric properties....
International audienceIn this paper, we propose a procedure to design a uniaxial anisotropic dielect...
This dissertation investigates the application of additive manufacturing to novel microwave componen...
In this publication, the use of a dielectric paste for dielectric resonator antenna (DRA) design is ...
Additive manufacturing has been combined with commercially available RF materials to synthesize comp...
Introduction Dielectric resonators using high-permittivity materials were originally developed for m...
The realization of flexible and conformable antennas, suitable for IoT applications, is still a chal...
Additive manufacturing offers new possibilities in innovative antennas and microwave components. In ...
Additive Manufacturing holds significant promise for microwave component design, enabling the produc...