IP Library Granted Patent US 9,450,310
Granted Patent B2
US 9,450,310 · App. 13/317,338 · Granted Sep 20, 2016

Surface scattering antennas

Inventors: Adam Bily (Seattle, WA); Anna K. Boardman (Allston, MA); Russell J. Hannigan (Sammamish, WA); John Hunt (Knoxville, TN); Nathan Kundtz (Kirkland, WA); David R. Nash (Arlington, WA); Ryan Allan Stevenson (Maple Valley, WA); Philip A. Sullivan (Bozeman, MT)
H01Q13/28H01Q3/00H01Q15/0006H01Q15/0066H01Q15/0086H01Q15/02H01Q15/10
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Quick Facts
Patent No.
US 9,450,310
App. No.
13/317,338
Granted
Sep 20, 2016
Kind
B2
Abstract

Surface scattering antennas provide adjustable radiation fields by adjustably coupling scattering elements along a wave-propagating structure. In some approaches, the scattering elements are complementary metamaterial elements. In some approaches, the scattering elements are made adjustable by disposing an electrically adjustable material, such as a liquid crystal, in proximity to the scattering elements. Methods and systems provide control and adjustment of surface scattering antennas for various applications.

Claims (24)

1. An antenna, comprising:

a waveguide; and

a plurality of individually dynamically adjustable scattering elements distributed along the waveguide with inter-element spacings substantially less than a free-space wavelength corresponding to an operating frequency of the antenna, where the plurality of individually dynamically adjustable scattering elements have a plurality of adjustable individual electromagnetic responses to a guided wave mode of the waveguide, and the plurality of adjustable individual electromagnetic responses provide a dynamically adjustable radiation field of the antenna;

wherein the waveguide includes a conducting surface and the plurality of scattering elements corresponds to a plurality of apertures within the conducting surface;

wherein each one of the plurality of scattering elements corresponds to a respective one of the plurality of apertures;

wherein the plurality of scattering elements includes a respective plurality of conducting islands that are electrically disconnected from the conducting surface, and the antenna further comprises a plurality of bias voltage lines configured to provide respective bias voltages between the conducting surface and the respective plurality of conducting islands.

2. The antenna of claim 1 , wherein the plurality of individually dynamically adjustable scattering elements is a plurality of substantially identical scattering elements.

3. The antenna of claim 1 , wherein the plurality of adjustable individual electromagnetic responses provides an effective medium response for the guided wave mode of the waveguide.

4. The antenna of claim 1 , wherein the plurality of adjustable individual electromagnetic responses is a plurality of magnetic dipole radiation fields.

5. The antenna of claim 1 , wherein the operating frequency is a microwave frequency.

6. The antenna of claim 1 , wherein the inter-element spacing is less than one-fourth of the free space wavelength.

7. The antenna of claim 1 , wherein the inter-element spacing is less than one-fifth of the free space wavelength.

8. The antenna of claim 1 , wherein the waveguide includes a substantially one-dimensional waveguide.

9. The antenna of claim 1 , wherein the waveguide includes a plurality of substantially one-dimensional waveguides composing a substantially two-dimensional antenna area.

10. The antenna of claim 8 , wherein the substantially one-dimensional waveguide includes a closed waveguide.

11. The antenna of claim 10 , wherein the closed waveguide includes a rectangular waveguide.

12. The antenna of claim 10 , wherein the conducting surface is an upper surface of the closed waveguide.

13. The antenna of claim 10 , wherein the conducting surface is positioned above an upper surface of the closed waveguide, and the upper surface includes a plurality of irises adjacent to the plurality of apertures within the conducting surface.

14. The antenna of claim 1 , wherein the waveguide includes a substantially two-dimensional waveguide.

15. The antenna of claim 14 , wherein the substantially two-dimensional waveguide includes a parallel-plate waveguide.

16. The antenna of claim 15 , wherein the conducting surface is an upper surface of the parallel-plate waveguide.

17. The antenna of claim 1 , further comprising:

an electrically adjustable material disposed at least partially within respective vicinities of the plurality of apertures.

18. The antenna of claim 17 , wherein the electrically adjustable material is a liquid crystal material.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2016
From: SEARETE LLC
To: THE INVENTION SCIENCE FUND I LLC
Reel/Frame 038911/0390 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2012
From: BILY, ADAM; STEVENSON, RYAN ALLAN; BOARDMAN, ANNA K.; HANNIGAN, RUSSELL J.; HUNT, JOHN; KUNDTZ, NATHAN; NASH, DAVID R.; SULLIVAN, PHILIP A.
To: SEARETE LLC
Reel/Frame 028114/0961 →
Continuity (2)
Provisional Application 61455171 · Oct 15, 2010
Related Publication 20120194399A1 · Aug 2, 2012