Claims
- 1. An antenna array comprising:
a first sub-array of antenna elements disposed so as to receive a radio frequency (RF) signal in a first sub-band of a frequency band; and one or more additional sub-arrays of antenna elements, interspersed within said first sub-array of antenna elements, said additional sub-arrays disposed so as to receive said RF signal in a respective one or more remaining sub-bands of said frequency band.
- 2. The antenna of claim 1 wherein the antenna elements of said first sub-array and said one or more additional sub-arrays are selected from the group consisting of dipole elements, bow-tie elements, spiral elements, and micro-strip patches.
- 3. The antenna of claim 1 wherein the antenna elements of said first sub-array and said one or more additional sub-arrays are disposed one-half of one free-space wavelength apart.
- 4. The antenna of claim 1 wherein the antenna elements of said first sub-array and said one or more additional sub-arrays are disposed so as to not allow grating lobes within a predetermined angle of scan.
- 5. The antenna of claim 1 wherein said additional sub-arrays comprise:
a second sub-array of elements for receiving said RF signal in a second sub-band of said frequency band; and a third sub-array of elements for receiving said RF signal in a third sub-band of said frequency band.
- 6. The antenna of claim 5 wherein said first sub-band comprises frequencies between 0.3 and 1.0 GHz, said second sub-band comprises frequencies between 1.0 and 3.5 GHz, and said third sub-band comprises frequencies between 3.5 and 12.4 GHz.
- 7. The antenna of claim 1 wherein said first sub-array and said one or more additional sub-arrays are disposed on a high-impedance surface.
- 8. The antenna of claim 7 wherein said high-impedance surface comprises:
a substrate; and a multiplicity of metallic patches disposed in a spaced apart relation on said substrate; wherein each of said metallic patches is coupled its respective adjacent metallic patches by a thin transmission line.
- 9. A phased array antenna system comprising:
M sub-arrays of antenna elements for receiving a radio frequency (RF) signal in a frequency band, wherein each of said M sub-arrays of antenna elements is disposed so as to receive said RF signal in a respective one of M sub-bands of said frequency band; N beamforming networks for combining the replicas of said RF signal received by the antenna elements of said M sub-arrays to form N output beams.
- 10. The phased array system of claim 9 further comprising:
a low noise amplifier (LNA) bank for amplifying said replicas; and N feed networks for coupling said replicas to a respective one of said N beamforming networks; and an adaptive control processor for controlling said N beamforming networks.
- 11. The phased array system of claim 9 wherein the antenna elements of said M sub-arrays are selected from the group consisting of dipole elements, bow-tie elements, spiral elements, and micro-strip patches.
- 12. The phased array system of claim 9 wherein the antenna elements of said M sub-arrays are disposed one-half of one free-space wavelength apart.
- 13. The phased array system of claim 9 wherein the antenna elements of said M sub-arrays are disposed so as to not allow grating lobes within a predetermined angle of scan.
- 14. The phased-array system of claim 9 wherein said M sub-arrays of antenna elements further comprise:
a first sub-array of antenna elements disposed so as to receive said RF signal in a first sub-band of said M sub-bands; a second sub-array of antenna elements interspersed within said first sub-array so as to receive said RF signal in a second sub-band of said M sub-bands; and a third sub-array of antenna elements interspersed within said second sub-array so as to receive said RF signal in a third sub-band of said M sub-bands.
- 15. The phased array system of claim 14 wherein said first sub-band comprises frequencies from 0.3 to 1.0 GHz, said second sub-band comprises frequencies between 1.0 GHz to 3.5 GHz, and said third sub-band comprises frequencies between 3.5 GHz and 12.4 GHz.
- 16. The phased array system of claim 9 wherein said M sub-arrays of elements are disposed on a high-impedance surface.
- 17. The phased array system of claim 16 wherein said high-impedance surface comprises:
a substrate; and a multiplicity of metallic patches disposed in a spaced apart relation on said substrate; wherein each of said metallic patches is coupled its respective adjacent metallic patches by a thin transmission line.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims benefit of U.S. provisional patent application serial No. 60/234,585, filed Sep. 22, 2000, which is herein incorporated by reference.
GOVERNMENT RIGHTS IN THIS INVENTION
[0002] This invention was made with U.S. government support under contract number 73010 NMA202-97-D-1033/0019. The U.S. government has certain rights in this invention.
Provisional Applications (1)
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Number |
Date |
Country |
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60234585 |
Sep 2000 |
US |