IP Library Granted Patent US 11,700,054
Granted Patent B2
US 11,700,054 · App. 17/174,095 · Granted Jul 11, 2023

Modular metasurface antenna with high instantaneous bandwidth

Inventors: Mohsen Sazegar (Kirkland, WA); Maxwell A. Smoot (Seattle, WA)
Assignee: Kymeta Corporation
H04B7/18515H01Q3/2682H01Q21/0025H04B7/0874
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Quick Facts
Patent No.
US 11,700,054
App. No.
17/174,095
Granted
Jul 11, 2023
Kind
B2
Abstract

Modular antennas with high instantaneous bandwidth are described. In one embodiment, an antenna comprises a plurality of antenna modules tiled together and configured to form one metasurface antenna with an array of surface scattering metamaterial antenna elements; and a feed network comprising a plurality of feed points coupled to the plurality of antenna modules to supply the modules with a feed wave.

Claims (45)

1. An antenna comprising:

a plurality of antenna modules tiled together and configured to form one metasurface antenna with an array of surface scattering metamaterial antenna elements;

a feed network comprising a plurality of feed points coupled to the plurality of antenna modules, each feed point of the plurality of feed points to supply one of the antenna modules with a feed wave;

a digital combiner coupled to the plurality of antenna modules to digitally combine signals from the plurality of antenna modules; and

an analog divider network to divide transmitted power among antenna modules in the plurality of antenna modules.

2. The antenna of claim 1 further comprising a true time-delay (TTD) component coupled to each antenna module to compensate for a time delay associated with angle of arrival delay.

3. The antenna of claim 2 wherein the TTD component is operable to perform compensation by performing adjustments in software to delay the signals from said each antenna module to compensate for the arrival delay.

4. The antenna of claim 3 wherein the TTD component applies the time delay in baseband, at intermediate frequency (IF), or at radio-frequency (RF).

5. The antenna of claim 1 wherein antenna modules of the plurality of antenna modules are hexagonal-shaped or rectangular-shaped center-fed antenna modules.

6. The antenna of claim 1 wherein the plurality of antenna modules are part of one substrate.

7. An antenna comprising:

a plurality of antenna modules tiled together and configured to form one metasurface antenna with an array of surface scattering metamaterial antenna elements, wherein each of the plurality of antenna modules comprises a plurality of surface scattering metamaterial receive antenna elements and a plurality of surface scattering metamaterial transmit antenna elements; and

a feed network comprising a plurality of feed points coupled to the plurality of antenna modules, each feed point of the plurality of feed points to supply one of the antenna modules with a feed wave; and

a controller coupled to the plurality of antenna modules to generate control patterns for the plurality of modules, wherein each control pattern for the plurality of surface scattering metamaterial receive antenna elements for each antenna module is independent from other antenna modules in the plurality of modules to enable each of the plurality of antenna modules to perform beam forming, and

further wherein the controller is operable to generate a control pattern across multiple antenna modules of the plurality of antenna modules for the surface scattering metamaterial transmit antenna elements on individual antenna modules to enable the multiple antenna modules to participate in beamforming at an array level.

8. An antenna comprising:

a plurality of antenna modules tiled together and configured to form one metasurface antenna with an array of surface scattering metamaterial antenna elements; and

a feed network comprising a plurality of feed points coupled to the plurality of antenna modules, each feed point of the plurality of feed points to supply one of the antenna modules with a feed wave; and

edge absorbers under edges of antenna modules of the plurality of modules for terminating a feed wave propagating in a waveguide beneath each antenna module.

9. An antenna comprising:

a plurality of antenna modules tiled together and configured to form one metasurface antenna with an array of surface scattering metamaterial antenna elements, wherein each of the plurality of antenna modules comprises a plurality of surface scattering metamaterial receive antenna elements and a plurality of surface scattering metamaterial transmit antenna elements;

a feed network comprising a plurality of feed points coupled to the plurality of antenna modules to supply the modules with a feed wave, wherein the feed network comprises

a digital combiner coupled to the plurality of antenna modules to digitally combine signals from the plurality of antenna modules, and

an analog divider network to divide transmitted power among antenna modules in the plurality of antenna modules; and

a controller coupled to the plurality of antenna modules to generate control patterns for the plurality of modules, wherein each control pattern for the plurality of surface scattering metamaterial receive antenna elements for each antenna module is independent from other antenna modules in the plurality of modules to enable each of the plurality of antenna modules to perform beam forming and further wherein the controller is operable to generate a control pattern across multiple antenna modules of the plurality of antenna modules for the surface scattering metamaterial transmit antenna elements on individual antenna modules to enable the multiple antenna modules to participate in beamforming at an array level.

10. The antenna of claim 9 further comprising a true time-delay (TTD) component coupled to each antenna module to compensate for a time delay associated with angle of arrival delay.

11. The antenna of claim 10 wherein the TTD component is operable to perform compensation by performing adjustments in software to delay the signals from said each antenna module to compensate for the arrival delay.

12. The antenna of claim 11 wherein the TTD component applies the time delay at baseband, at intermediate frequency (IF), or at radio-frequency (RF).

13. The antenna of claim 9 wherein antenna modules of the plurality of antenna modules are hexagonal-shaped or rectangular-shaped center-fed antenna modules.

14. The antenna of claim 9 wherein the plurality of antenna modules are part of one substrate.

15. The antenna of claim 9 further comprising edge absorbers under edges of antenna modules of the plurality of modules for terminating a feed wave propagating in a waveguide beneath each antenna module.

16. An antenna comprising:

a plurality of antenna modules tiled together and configured to form one metasurface antenna with an array of surface scattering metamaterial antenna elements in an area of a first size; and

a feed network comprising a plurality of feed points coupled to the plurality of antenna modules to supply the modules with a feed wave to reduce guide length associated with the antenna to a fraction of guide length associated with the metasurface antenna has the metasurface antenna consisting of a single module covering the area of the first size, the metasurface antenna comprising the plurality of antenna modules having a higher instantaneous bandwidth than the metasurface antenna consisting of a single module covering the area.

17. The antenna of claim 16 further comprising:

a digital combiner coupled to the plurality of antenna modules to digitally combine signals from the plurality of antenna modules, and

an analog divider network to divide transmitted power among antenna modules in the plurality of antenna modules.

18. The antenna of claim 16 wherein each of the plurality of antenna modules comprises a plurality of surface scattering metamaterial receive antenna elements and a plurality of surface scattering metamaterial transmit antenna elements, and further comprising

a controller coupled to the plurality of antenna modules to generate control patterns for the plurality of modules, wherein each control pattern for the plurality of surface scattering metamaterial receive antenna elements for each antenna module is independent from other antenna modules in the plurality of modules to enable each of the plurality of antenna modules to perform beam forming and further wherein the controller is operable to generate a control pattern across multiple antenna modules of the plurality of antenna modules for the surface scattering metamaterial transmit antenna elements on individual antenna modules to enable the multiple antenna modules to participate in beamforming at an array level.

19. An antenna comprising:

a plurality of antenna modules tiled together and configured to form one flat-panel antenna with an array of antenna elements, wherein each of the plurality of antenna modules comprises a plurality of receive antenna elements and a plurality of transmit antenna elements;

a feed network comprising a plurality of feed points coupled to the plurality of antenna modules to supply the modules with a feed wave, wherein the feed network comprises

a digital combiner coupled to the plurality of antenna modules to digitally combine signals from the plurality of antenna modules, and

an analog divider network to divide transmitted power among antenna modules in the plurality of antenna modules; and

a controller coupled to the plurality of antenna modules to generate control patterns for the plurality of modules, wherein each control pattern for the plurality of receive antenna elements for each antenna module is independent from other antenna modules in the plurality of modules to enable each of the plurality of antenna modules to perform beam forming, and further wherein the controller is operable to generate a control pattern across multiple antenna modules of the plurality of antenna modules for the transmit antenna elements on individual antenna modules to enable the multiple antenna modules to participate in beamforming at an array level.

Assignments (4)
SECURITY INTEREST Recorded Feb 7, 2025
From: KYMETA CORPORATION
To: GATES FRONTIER, LLC
Reel/Frame 070154/0001 →
SECURITY INTEREST Recorded Jul 11, 2024
From: KYMETA CORPORATION
To: TRINITY CAPITAL INC.
Reel/Frame 068276/0105 →
SECURITY INTEREST Recorded Apr 12, 2024
From: KYMETA CORPORATION
To: GATES FRONTIER, LLC
Reel/Frame 067095/0862 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2022
From: SAZEGAR, MOHSEN; SMOOT, MAXWELL A.
To: KYMETA CORPORATION
Reel/Frame 059007/0359 →
Continuity (2)
Provisional Application 62977006 · Feb 14, 2020
Related Publication 20210258069A1 · Aug 19, 2021