In this paper, a wideband and compact high gain Lunenburg-based lens antenna for the Ka-band is proposed. The main potential applications are for 5G wireless communication systems and automotive radar applications. The antenna provides about 46.7% of bandwidth (|S11| ≤ -10 dB) covering a frequency band ranging from 23.6 - 38 GHz. It also exhibits excellent propagation characteristics with only a 2.7 dB maximum gain variation with sidelobe levels lower than -18 dB over the entire bandwidth. In addition, with a multi-feed system, the antenna presents a beam switching capability of ±32° in the azimuth plane with a gain fluctuation of less than 0.4 dB and sidelobes levels of less than -14 dB over the entire scan range. The simulated results sho...
The new services available through smart devices require very high cellular network capacity. The ca...
International audienceThis paper presents an all-metal parallel plate waveguide (PPW) Luneburg lens ...
International audienceThis paper presents an all-metal parallel plate waveguide (PPW) Luneburg lens ...
In this article, we propose a new design of a multibeam cylindrical Luneburg lens antenna designed i...
In this article, we propose a new design of a multibeam cylindrical Luneburg lens antenna designed i...
In this article, we propose a new design of a multibeam cylindrical Luneburg lens antenna designed i...
International audienceThis communication presents the design and experimental verification of a subs...
This article presents a circular lens antenna for wide-angle beam-steering and for dual-polarized op...
International audienceThis communication presents the design and experimental verification of a subs...
International audienceThis communication presents the design and experimental verification of a subs...
International audienceThis communication presents the design and experimental verification of a subs...
International audienceThis communication presents the design and experimental verification of a subs...
In this paper, a two-dimensional cylindrical Lens antenna based on the parallel plate technique is d...
International audienceThis paper presents an all-metal parallel plate waveguide (PPW) Luneburg lens ...
The new services available through smart devices require very high cellular network capacity. The ca...
The new services available through smart devices require very high cellular network capacity. The ca...
International audienceThis paper presents an all-metal parallel plate waveguide (PPW) Luneburg lens ...
International audienceThis paper presents an all-metal parallel plate waveguide (PPW) Luneburg lens ...
In this article, we propose a new design of a multibeam cylindrical Luneburg lens antenna designed i...
In this article, we propose a new design of a multibeam cylindrical Luneburg lens antenna designed i...
In this article, we propose a new design of a multibeam cylindrical Luneburg lens antenna designed i...
International audienceThis communication presents the design and experimental verification of a subs...
This article presents a circular lens antenna for wide-angle beam-steering and for dual-polarized op...
International audienceThis communication presents the design and experimental verification of a subs...
International audienceThis communication presents the design and experimental verification of a subs...
International audienceThis communication presents the design and experimental verification of a subs...
International audienceThis communication presents the design and experimental verification of a subs...
In this paper, a two-dimensional cylindrical Lens antenna based on the parallel plate technique is d...
International audienceThis paper presents an all-metal parallel plate waveguide (PPW) Luneburg lens ...
The new services available through smart devices require very high cellular network capacity. The ca...
The new services available through smart devices require very high cellular network capacity. The ca...
International audienceThis paper presents an all-metal parallel plate waveguide (PPW) Luneburg lens ...
International audienceThis paper presents an all-metal parallel plate waveguide (PPW) Luneburg lens ...