A wideband high gain three-layer hemispherical dielectric resonator antenna (HDRA) that operates at TE511 and TE711 higher order modes is proposed. The HDRA is composed of three layers, which has permittivities of 20, 10 and 3.5. The multilayer structure has been chosen in order to reduce the Q-factor and achieve a wider impedance bandwidth. Cross slot feeding mechanism has been utilized taking into account the excited higher order modes for gain enhancement. The proposed antenna provides an impedance bandwidth of 35.8% over a frequency range of 20.8 to 29.9 GHz in conjunction with a high gain of ~9.5 dBi. The proposed DRA represents the first attempt in utilizing a mm-wave hemispherical DRA
This paper presents the design of a low-profile dielectric resonator antenna (DRA) for wideband syst...
A novel two-layer stacked wideband dielectric resonator antenna (DRA) of rectangular shape is propos...
A novel high-gain dielectric resonator antenna (DRA) for wideband wireless applications is presented...
A wideband high gain three-layer hemispherical dielectric resonator antenna (HDRA) that operates at ...
A distinctive configuration of rectangular waveguide fed hemispherical dielectric resonator antenna ...
A wideband hemispherical dielectric resonator antenna (DRA) with enhanced gain is proposed for a fre...
A wideband high gain circularly polarized layered cylindrical dielectric resonator antenna (DRA) tha...
A wideband high gain circularly polarized (CP) rectangular dielectric resonator antenna (RDRA) havin...
Dielectric resonator antennas (DRAs) are promising candidates for the next-generation wireless commu...
A novel cup-shaped dielectric resonator antenna (DRA) geometry based on inverted hemispherical diele...
A novel approach is proposed to design a circularly polarized (CP) hemispherical dielectric resonato...
International audienceA novel wideband rectangular dielectric resonator antenna (RDRA) is proposed i...
In this paper, wideband high gain dielectric resonator antenna for 5G applications is presented. Hig...
In this paper, dielectric resonator antenna (DRA) with enhanced gain operating on the higher order m...
In this paper, a novel hemispherical dielectric resonator antenna (HDRA) with complementary split ri...
This paper presents the design of a low-profile dielectric resonator antenna (DRA) for wideband syst...
A novel two-layer stacked wideband dielectric resonator antenna (DRA) of rectangular shape is propos...
A novel high-gain dielectric resonator antenna (DRA) for wideband wireless applications is presented...
A wideband high gain three-layer hemispherical dielectric resonator antenna (HDRA) that operates at ...
A distinctive configuration of rectangular waveguide fed hemispherical dielectric resonator antenna ...
A wideband hemispherical dielectric resonator antenna (DRA) with enhanced gain is proposed for a fre...
A wideband high gain circularly polarized layered cylindrical dielectric resonator antenna (DRA) tha...
A wideband high gain circularly polarized (CP) rectangular dielectric resonator antenna (RDRA) havin...
Dielectric resonator antennas (DRAs) are promising candidates for the next-generation wireless commu...
A novel cup-shaped dielectric resonator antenna (DRA) geometry based on inverted hemispherical diele...
A novel approach is proposed to design a circularly polarized (CP) hemispherical dielectric resonato...
International audienceA novel wideband rectangular dielectric resonator antenna (RDRA) is proposed i...
In this paper, wideband high gain dielectric resonator antenna for 5G applications is presented. Hig...
In this paper, dielectric resonator antenna (DRA) with enhanced gain operating on the higher order m...
In this paper, a novel hemispherical dielectric resonator antenna (HDRA) with complementary split ri...
This paper presents the design of a low-profile dielectric resonator antenna (DRA) for wideband syst...
A novel two-layer stacked wideband dielectric resonator antenna (DRA) of rectangular shape is propos...
A novel high-gain dielectric resonator antenna (DRA) for wideband wireless applications is presented...