In this work, gain of a traditional horn antenna is enhanced up to 2.9 dB over X-band using 3D printed square-shaped multi-layer lens. For this purpose, firstly the multi-layer lenses are designed using Invasive Weed Optimization (IWO) and simulated in 3-D CST Microwave Studio (MWS) environment as consisting of square-shaped five layers with variable dielectric constants and heights. Thus, optimum values of the dielectric constants and heights are resulted limiting from 1.15 to 2.1 and 9.2 mm to 10 mm, respectively compatible for Fused Deposition Modeling (FDM) based 3D-printing process. Finally, the optimum lens is realized by 3D printer via FDM evaluating infill rate of cheap Polylactic Acid (PLA) material for each layer. The simulated an...
In this study, we used 3D printing technology to develop and create a quad-ridged horn antenna for u...
A novel methodology is introduced for designing bespoke homogeneous and graded index lenses for enha...
In this work, we present a method for designing a dielectric lens with a reduced height that is easi...
In this work, gain of a traditional horn antenna is enhanced up to 2.9 dB over X-band using 3D print...
In this work, design and realization of high performance, low-cost X-band multilayered cylindrical d...
WOS: 000476623500019In this work, 3D printing technology had been used to prototyped 10 dielectric s...
In this work, 3D printing technology had been used to prototyped 10 dielectric sheets with relative ...
With the latest developments in 3D printing technologies and decreases in their costs, these prototy...
Herein, design and realization of a novel, low cost, small size, high gain, 3D printed multilayered ...
This paper reports on the design and three-dimensional (3D) integration of low-cost, low-loss and ea...
This paper reports on the design and three-dimensional (3D) integration of low-cost, low-loss and ea...
With the latest developments in 3D printing technologies and decreases in their costs, these prototy...
This paper presents a portable 3D-printed lens antenna fed by a standard rectangular waveguide at X-...
To increase capacity, lower latency, and boostdata rates, new higher gain antennas that can transmit...
To increase capacity, lower latency, and boostdata rates, new higher gain antennas that can transmit...
In this study, we used 3D printing technology to develop and create a quad-ridged horn antenna for u...
A novel methodology is introduced for designing bespoke homogeneous and graded index lenses for enha...
In this work, we present a method for designing a dielectric lens with a reduced height that is easi...
In this work, gain of a traditional horn antenna is enhanced up to 2.9 dB over X-band using 3D print...
In this work, design and realization of high performance, low-cost X-band multilayered cylindrical d...
WOS: 000476623500019In this work, 3D printing technology had been used to prototyped 10 dielectric s...
In this work, 3D printing technology had been used to prototyped 10 dielectric sheets with relative ...
With the latest developments in 3D printing technologies and decreases in their costs, these prototy...
Herein, design and realization of a novel, low cost, small size, high gain, 3D printed multilayered ...
This paper reports on the design and three-dimensional (3D) integration of low-cost, low-loss and ea...
This paper reports on the design and three-dimensional (3D) integration of low-cost, low-loss and ea...
With the latest developments in 3D printing technologies and decreases in their costs, these prototy...
This paper presents a portable 3D-printed lens antenna fed by a standard rectangular waveguide at X-...
To increase capacity, lower latency, and boostdata rates, new higher gain antennas that can transmit...
To increase capacity, lower latency, and boostdata rates, new higher gain antennas that can transmit...
In this study, we used 3D printing technology to develop and create a quad-ridged horn antenna for u...
A novel methodology is introduced for designing bespoke homogeneous and graded index lenses for enha...
In this work, we present a method for designing a dielectric lens with a reduced height that is easi...