An invention is described which provides for receiving a circularly polarized signal from an antenna feed connected to orthogonally spaced antenna elements. It also provides for transmitting a linearly polarized signal through the same feed without switches, and without suffering a 3 dB polarization mismatch loss, using an arrangement of hybrid junctions. The arrangement is comprised of two dividing hybrid junctions, each connected to a different pair of antenna elements and a summing hybrid junction. In one version, a receiver is connected to the summing hybrid junction directly. A diplexer is used to connect a transmitter to only one pair of antenna elements. In another version, designated left and right circularly polarized (LCP and RCP)...
Polarization diversity monopulse tracking receiver design without radio frequency switche
© 1963-2012 IEEE. A pattern-reconfigurable slot-augmented patch antenna is reported that radiates ci...
Improved antenna design embodies the principles of turnstiling, broadbanding, and delta dipole match...
A receiving system for automatically selecting a desired one of two approximately orthogonally polar...
Two quarterwave-plate polarizers inserted between rotary waveguide joints transform received signals...
The slotted antenna structure discussed in this tech brief radiates a circularly polarized beam patt...
In this paper a novel dual-band single circular polarization antenna feeding network for satellite c...
Antenna feed features high aperture efficiency of multimode near-field horn and develops tracking si...
Compact back-to-back trapezoidal tooth log-periodic /TTLP/ antenna with frequency-independent charac...
Monopole antenna system for maximum omnidirectional efficiency for use on satellite
Abstract — In this paper, a compact and original feeding circuit architecture is proposed to synthes...
This paper describes an RFID reader antenna that offers reduced polarization loss compared to that t...
The cup cylindrical waveguide antenna (CCWA) is a short backfire microwave antenna capable of simult...
The principle and design of an L-band omni-directional mobile communication antenna are discussed. T...
In this work, a dual circular polarized steering antenna for satellite communications in X band is p...
Polarization diversity monopulse tracking receiver design without radio frequency switche
© 1963-2012 IEEE. A pattern-reconfigurable slot-augmented patch antenna is reported that radiates ci...
Improved antenna design embodies the principles of turnstiling, broadbanding, and delta dipole match...
A receiving system for automatically selecting a desired one of two approximately orthogonally polar...
Two quarterwave-plate polarizers inserted between rotary waveguide joints transform received signals...
The slotted antenna structure discussed in this tech brief radiates a circularly polarized beam patt...
In this paper a novel dual-band single circular polarization antenna feeding network for satellite c...
Antenna feed features high aperture efficiency of multimode near-field horn and develops tracking si...
Compact back-to-back trapezoidal tooth log-periodic /TTLP/ antenna with frequency-independent charac...
Monopole antenna system for maximum omnidirectional efficiency for use on satellite
Abstract — In this paper, a compact and original feeding circuit architecture is proposed to synthes...
This paper describes an RFID reader antenna that offers reduced polarization loss compared to that t...
The cup cylindrical waveguide antenna (CCWA) is a short backfire microwave antenna capable of simult...
The principle and design of an L-band omni-directional mobile communication antenna are discussed. T...
In this work, a dual circular polarized steering antenna for satellite communications in X band is p...
Polarization diversity monopulse tracking receiver design without radio frequency switche
© 1963-2012 IEEE. A pattern-reconfigurable slot-augmented patch antenna is reported that radiates ci...
Improved antenna design embodies the principles of turnstiling, broadbanding, and delta dipole match...