In this paper, dielectric resonator antenna (DRA) with enhanced gain operating on the higher order mode (15 ) is presented. The dielectric resonator antenna with dielectric constant of 10 and loss tangent of 0.002 is used. The DRA is fed by microstrip line through an aperture slot. The proposed antenna is designed at 26 GHz and achieved a gain of 7.9 dBi with corresponding simulated radiation efficiency of 93%. The impedance bandwidth of 1.5 GHz from 25.1 GHz to 26.6 GHz has been achieved. The reflection coefficient, antenna gain, radiation patterns, and efficiency of the antenna are studied. Simulations are performed using CST microwave studio, and their results are presented
In this paper, the square-shaped dielectric resonator antenna (DRA) operating on higher order ( ) mo...
In this paper, wideband high gain dielectric resonator antenna for 5G applications is presented. Hig...
\u3cp\u3eAn up-to-date literature overview on relevant approaches for controlling circuital characte...
In this paper, dielectric resonator antenna (DRA) with enhanced gain operating on the higher order m...
In this paper, wideband high gain dielectric resonator antenna for 5G applications is presented. Hig...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
In this paper, a dielectric resonator antenna (DRA) with high gain and wide impedance bandwidth for ...
The excitation of the higher-order mode, TEy 1δ3 in rectangular dielectric resonator designed was ex...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
In this paper, a Rectangular Dielectric Resonator Antenna (RDRA) with a modified feeding line is des...
In this paper, the square-shaped dielectric resonator antenna (DRA) operating on higher order ( ) mo...
In this paper, the square-shaped dielectric resonator antenna (DRA) operating on higher order ( ) mo...
In this paper, wideband high gain dielectric resonator antenna for 5G applications is presented. Hig...
\u3cp\u3eAn up-to-date literature overview on relevant approaches for controlling circuital characte...
In this paper, dielectric resonator antenna (DRA) with enhanced gain operating on the higher order m...
In this paper, wideband high gain dielectric resonator antenna for 5G applications is presented. Hig...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
In this paper, a dielectric resonator antenna (DRA) with high gain and wide impedance bandwidth for ...
The excitation of the higher-order mode, TEy 1δ3 in rectangular dielectric resonator designed was ex...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
An up-to-date literature overview on relevant approaches for controlling circuital characteristics a...
In this paper, a Rectangular Dielectric Resonator Antenna (RDRA) with a modified feeding line is des...
In this paper, the square-shaped dielectric resonator antenna (DRA) operating on higher order ( ) mo...
In this paper, the square-shaped dielectric resonator antenna (DRA) operating on higher order ( ) mo...
In this paper, wideband high gain dielectric resonator antenna for 5G applications is presented. Hig...
\u3cp\u3eAn up-to-date literature overview on relevant approaches for controlling circuital characte...