This work presents the design and optimization of a Radar Absorbing Material system in the X-Band frequency. Radar Absorbing Material is required in some military and aerospace systems in order to reduce the radar detection/visibility, Stealth technology is the most known application. Two different evolutionary algorithms are applied and results are shown and compared to each other. Algorithms are Particle Swarm Optimization and Genetic Algorithm. Multilayer structures optimized by the algorithms are based on carbon nanostructured composite materials. Nanomaterials and micromaterials used are Carbon Nanotube, Carbon Nanofiber, Fullerene, Micrographite. Differences in absorption performaces for composite absorber based on micromaterials and ...
This work deals with the design of electromagnetic absorber of interest in radar absorbing material ...
In this work the electromagnetic characterization of composite materials reinforced with carbon and ...
There has been a long-standing interest in the development of radar absorbing materials (RAMs) for m...
The present research shows a powerful method for the design of multi-layered radar absorbing materia...
This work deals with the design of electromagnetic absorber of interest in radar absorbing material ...
This work deals with the design of electromagnetic absorber of interest in radar absorbing material ...
Abstract- Modelling and manufacturing of radar absorbing material are proposed using multilayer comp...
A new method for the synthesis of multilayered radar absorbing materials is analyzed by using carbon...
This work is focused on the capability to design materials having a particular reflection coefficien...
Modelling and manufacturing of radar absorbing material are proposed using multilayer composite nano...
In this paper, we present the design of nanostructured multilayer absorbers, carried out with the ai...
Currently some aerospace application of composite materials is to substitute classical metal based s...
Abstract In this paper, we present the design of nanostructured multilayer absorbers, carried out...
The optimal design objectives of the microwave absorbing (MA) materials are high absorption, wide ba...
This work deals with the design of electromagnetic absorber of interest in radar absorbing material ...
This work deals with the design of electromagnetic absorber of interest in radar absorbing material ...
In this work the electromagnetic characterization of composite materials reinforced with carbon and ...
There has been a long-standing interest in the development of radar absorbing materials (RAMs) for m...
The present research shows a powerful method for the design of multi-layered radar absorbing materia...
This work deals with the design of electromagnetic absorber of interest in radar absorbing material ...
This work deals with the design of electromagnetic absorber of interest in radar absorbing material ...
Abstract- Modelling and manufacturing of radar absorbing material are proposed using multilayer comp...
A new method for the synthesis of multilayered radar absorbing materials is analyzed by using carbon...
This work is focused on the capability to design materials having a particular reflection coefficien...
Modelling and manufacturing of radar absorbing material are proposed using multilayer composite nano...
In this paper, we present the design of nanostructured multilayer absorbers, carried out with the ai...
Currently some aerospace application of composite materials is to substitute classical metal based s...
Abstract In this paper, we present the design of nanostructured multilayer absorbers, carried out...
The optimal design objectives of the microwave absorbing (MA) materials are high absorption, wide ba...
This work deals with the design of electromagnetic absorber of interest in radar absorbing material ...
This work deals with the design of electromagnetic absorber of interest in radar absorbing material ...
In this work the electromagnetic characterization of composite materials reinforced with carbon and ...
There has been a long-standing interest in the development of radar absorbing materials (RAMs) for m...