1994Unpublished venueRequires access

Shaped reflector antennas for satellite communications

Minh Tang, K. Seshagiri Rao, M. Cuchanski, R. Pokuls

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Abstract

Shaped reflector antennas are capable of producing desired coverage contours on earth by using a single horn thereby avoiding the need for complicated feed arrays and associated beamforming networks (BFNs). The advantages of shaped reflector technology for SATCOM antennas are lower cost, reduced mass and shorter delivery schedule. Development results of a dual-gridded shaped reflector designed for Canada and Conus (cities only) coverage at C-band are discussed in this paper. Measured results are compared with computed results and sensitivity analysis is carried out to establish tolerance requirements for shaped reflector antennas.

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What this paper is about

Shaped reflector antennas are capable of producing desired coverage contours on earth by using a single horn thereby avoiding the need for complicated feed arrays and associated beamforming networks (BFNs). The advantages of shaped reflector technology for SATCOM antennas are lower cost, reduced mass and shorter delivery schedule. Development results of a dual-gridded shaped reflector designed for Canada and Conus (cities only) coverage at C-band are discussed in this paper. Measured results are compared with computed results and sensitivity analysis is carried out to establish tolerance requirements for shaped reflector antennas.

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Available abstract

Shaped reflector antennas are capable of producing desired coverage contours on earth by using a single horn thereby avoiding the need for complicated feed arrays and associated beamforming networks (BFNs). The advantages of shaped reflector technology for SATCOM antennas are lower cost, reduced mass and shorter delivery schedule. Development results of a dual-gridded shaped reflector designed for Canada and Conus (cities only) coverage at C-band are discussed in this paper. Measured results are compared with computed results and sensitivity analysis is carried out to establish tolerance requirements for shaped reflector antennas.

Key concepts: Reflector (photography), Feed horn, Cassegrain antenna, Communications satellite, Sensitivity (control systems), Directional antenna, Beamforming, Computer science

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