Claims
- 1. A multi-beam antenna system for generating multiple beams, comprising
a plurality of single beam reflectors, each having its own feed, the plurality of single beam reflectors producing a plurality of beams, each beam serving a substantially separate cell of an on-station pattern; and wherein at least one of the plurality of beams is optimized for an operational characteristic.
- 2. The multi-beam antenna of claim 1, wherein the operational characteristic includes mainlobe performance.
- 3. The multi-beam antenna of claim 1, wherein the operational characteristic includes sidelobe performance.
- 4. The multibeam antenna of claim 1, wherein the sidelobe performance includes sidelobe suppression over an associated cell of at least one reflector.
- 5. The multi-beam antenna of claim 1, wherein the operational characteristic includes a size of the cell served by the beam.
- 6. The multi-beam antenna of claim 1, wherein the operational characteristic includes a shape of the cell served by the beam.
- 7. The multi-beam antenna of claim 1, wherein the plurality of reflectors are disposed on a platform and the operational characteristic includes platform to cell geometry.
- 8. The multi-beam antenna system of claim 1, wherein the operational characteristic further includes an altitude of the single beam reflectors.
- 9. The multi-beam antenna system of claim 1, wherein the operational characteristic further includes an operating frequency.
- 10. The multi-beam antenna system of claim 1, wherein the operational characteristic includes a beam field of view.
- 11. The multi-beam antenna system of claim 1, wherein the operational characteristic includes uniform illumination of the cell.
- 12. The multi-beam antenna system of claim 1, wherein the reflector associated with the beam is shaped to provide the optimized operational characteristic.
- 13. The multi-beam antenna system of claim 1, wherein the feed is optimized to provide the optimized operational characteristic.
- 14. The multi-beam antenna system of claim 1, wherein each reflector is pointed at a center of the beam produced by the reflector.
- 15. The multi-beam antenna system of claim 1, wherein each reflector is rotated to point at a center of the beam produced by the reflector.
- 16. The multi-beam antenna of claim 1, wherein a shape of at least one of the cells of the on-station pattern is different than a shape of another one of the cells of the on-station pattern.
- 17. The multi-beam antenna of claim 1, wherein coverage of one or more cells of the on-station pattern is omitted.
- 18. The multi-beam antenna of claim 1, wherein one or more cells of the on-station pattern overlap.
- 19. A method of producing multiple antenna beams, comprising:
generating a plurality of beams from a plurality of single beam feeds; and reflecting each beam from a separate reflector of a plurality of single beam reflector rings to a substantially separate coverage area; wherein at least one of the single beam reflectors or respective feeds servicing the cells includes design parameters that are optimized for an operational characteristic.
- 20. The method of claim 19, wherein the operational characteristic includes mainlobe performance.
- 21. The method of claim 19, wherein the operational characteristic includes sidelobe performance.
- 22. The method of claim 19, wherein the sidelobe performance includes sidelobe suppression over an associated cell of at least one reflector.
- 23. The method of claim 19, wherein the operational characteristic includes a size of the cell served by the beam.
- 24. The method of claim 19, wherein the operational characteristic includes a shape of the cell served by the beam.
- 25. The method of claim 19, wherein the plurality of reflectors are disposed on a platform and the operational characteristic includes platform to cell geometry.
- 26. The method system of claim 19, wherein the operational characteristic further includes an altitude of the single beam reflectors.
- 27. The method system of claim 19, wherein the operational characteristic further includes an operating frequency.
- 28. The method system of claim 19, wherein the operational characteristic includes a beam field of view.
- 29. The method system of claim 19, wherein the reflector associated with the beam is shaped to provide the optimized operational characteristic.
- 30. The method system of claim 19, wherein the feed is optimized to provide the optimized operational characteristic.
- 31. The method system of claim 19, wherein each reflector is pointed at a center of the beam produced by the reflector.
- 32. The method system of claim 19, wherein each reflector is rotated to point at a center of the beam produced by the reflector.
- 33. The method of claim 19, wherein a shape of at least one of the cells of the on-station pattern is different than a shape of another one of the cells of the on-station pattern.
- 34. The method of claim 19, wherein the on-station pattern omits one or more cells.
- 35. The method of claim 19, wherein one or more cells of the on-station pattern overlap.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This is a continuation of Ser. No. 09/703,605, filed on Oct. 31, 2000, entitled “Multi-Beam Antenna Communication System and Method”, inventors Parthasarathy Ramanujam, Harold A. Rosen, Mark T. Austin and William D. Beightol, now pending, the entire contents of which are incorporated herein by this reference.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09703605 |
Oct 2000 |
US |
Child |
10093117 |
Mar 2002 |
US |