Scan performance of dual offset reflector antennas for satellite communications
Yahya Rahmat‐Samii, V. Galindo‐Israel
Abstract
Yahya Rahmat‐Samii, V. Galindo‐Israel
Abstract
This paper summarizes the basic numerical steps employed to analyze dual offset reflector antennas. The technique is based on the application of the geometrical theory of diffraction from the subreflector and physical optics (PO) scattering from the main reflector. The PO integral is evaluated by using the Jacobi‐Bessel series expansion. Numerical results are presented for the off‐axis (scan) performance of an offset (clear aperture) Cassegrain antenna and comparison is made between a Cassegrain antenna and its equivalent paraboloid.
OpenAlex reports 20 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This paper summarizes the basic numerical steps employed to analyze dual offset reflector antennas. The technique is based on the application of the geometrical theory of diffraction from the subreflector and physical optics (PO) scattering from the main reflector. The PO integral is evaluated by using the Jacobi‐Bessel series expansion. Numerical results are presented for the off‐axis (scan) performance of an offset (clear aperture) Cassegrain antenna and comparison is made between a Cassegrain antenna and its equivalent paraboloid.
Key concepts: Cassegrain antenna, Cassegrain reflector, Paraboloid, Optics, Reflector (photography), Offset (computer science), Offset dish antenna, Fan-beam antenna