IP Library Granted Patent US 11,575,202
Granted Patent B2
US 11,575,202 · App. 17/297,047 · Granted Feb 7, 2023

Monopole antenna assembly with directive-reflective control

Inventors: Gerard James Hayes (Wake Forest, NC); Koichiro Takamizawa (Silver Spring, MD); James O. Legvold (Willow Park, TX); Elbert Stanford Eskridge, Jr. (Chapel Hil, NC); Mike Barts (Raleigh, NC); John Swartz (Durham, NC)
Assignee: SMARTSKY NETWORKS LLC
H01Q3/446H01Q1/28H01Q1/282H01Q1/287H01Q9/34H01Q19/32H01Q21/205
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,575,202
App. No.
17/297,047
Granted
Feb 7, 2023
Kind
B2
Abstract

An antenna assembly includes a driven element, a first set of antenna elements disposed a first distance from the driven element such that each element of the first set of antenna elements is equidistant from adjacent elements of the first set of antenna elements, and a second set of antenna elements disposed a second distance from the driven element such that each element of the second set of antenna elements is equidistant from adjacent elements of the second set of antenna elements, the second distance being larger than the first distance. The antenna assembly includes or is operably coupled to a selector module configured to select one element of the first set of antenna elements as a selected director, and select one element of the second set of antenna elements as a selected reflector by effectively shortening a length of the selected director and effectively lengthening the selected reflector.

Claims (28)

1. An antenna assembly comprising:

a driven element;

a first set of antenna elements disposed a first distance from the driven element such that each element of the first set of antenna elements is equidistant from adjacent elements of the first set of antenna elements; and

a second set of antenna elements disposed a second distance from the driven element such that each element of the second set of antenna elements is equidistant from adjacent elements of the second set of antenna elements, the second distance being larger than the first distance,

wherein the antenna assembly includes or is operably coupled to a selector module configured to generate a beam by selecting only one element of the first set of antenna elements as a selected director, and selecting only one element of the second set of antenna elements as a selected reflector by effectively shortening a length of the selected director and effectively lengthening the selected reflector.

2. The antenna assembly of claim 1 , wherein a number of the first set of antenna elements is equal to a number of the second set of antenna elements.

3. The antenna assembly of claim 2 , wherein the first set of antenna elements are each in radial alignment with corresponding ones of the second set of antenna elements.

4. The antenna assembly of claim 3 , wherein the selected director and the selected reflector are disposed on opposite sides of the driven element.

5. The antenna assembly of claim 1 , further comprising a ground plane at which the driven element, the first set of antenna elements and the second set of antenna elements are mounted such that the driven element, the first set of antenna elements and the second set of antenna elements each extend substantially perpendicularly away from the ground plane and parallel to each other.

6. The antenna assembly of claim 5 , wherein the selected director is effectively shortened by adding a capacitor in series therewith, and the selected reflector is effectively lengthened by adding an inductor in series therewith.

7. The antenna assembly of claim 6 , wherein the selector module grounds out all of the first set of antenna elements except for the selected director, and grounds out all of the second set of antenna elements except for the selected reflector.

8. The antenna assembly of claim 7 , wherein the selector module comprises a first switch assembly configured to connect the selected director to the capacitor and electrically connect the all of the first set of antenna elements except for the selected director to the ground plane, and

wherein the selector module comprises a second switch assembly configured to connect the selected reflector to the inductor and electrically connect the all of the second set of antenna elements except for the selected reflector to the ground plane.

9. The antenna assembly of claim 5 , wherein the ground plane is formed at a physical interface of an aircraft wing or fuselage.

10. The antenna assembly of claim 9 , wherein a radome houses the driven element, the first set of antenna elements and the second set of antenna elements, the radome being operably coupled to the aircraft wing or fuselage.

11. The antenna assembly of claim 10 , wherein the radome has a diameter of less than about 3.5 inches and a height of less than about 2 inches, and wherein the ground plane is at least 4 feet in diameter.

12. The antenna assembly of claim 1 , wherein, responsive to operation of the selector module, the antenna assembly is configurable to steer a directive beam 360 degrees in azimuth with a fixed beamwidth in elevation.

13. The antenna assembly of claim 12 , wherein the antenna assembly is configured to be disposed on an aircraft, and wherein the fixed beamwidth in elevation is directed toward the horizon.

14. A selector module for control of an antenna assembly comprising a driven element, a first set of antenna elements disposed a first distance from the driven element such that each element of the first set of antenna elements is equidistant from adjacent elements of the first set of antenna elements, and a second set of antenna elements disposed a second distance from the driven element such that each element of the second set of antenna elements is equidistant from adjacent elements of the second set of antenna elements, the second distance being larger than the first distance, the selector module comprising:

a first switch assembly operably coupled to the first set of antenna elements to select only one element of the first set of antenna elements as a selected director and to effectively shorten a length of the selected director to form a beam, and

a second switch assembly operably coupled to the second set of antenna elements to select only one element of the second set of antenna elements as a selected reflector and to effectively lengthen the selected reflector to form the beam.

15. The selector module of claim 14 , wherein the antenna assembly further comprises a ground plane at which the driven element, the first set of antenna elements and the second set of antenna elements are mounted such that the driven element, the first set of antenna elements and the second set of antenna elements each extend substantially perpendicularly away from the ground plane and parallel to each other.

16. The selector module of claim 15 , wherein the selected director is effectively shortened by adding a capacitor in series therewith, and the selected reflector is effectively lengthened by adding an inductor in series therewith.

17. The selector module of claim 16 , wherein the selector module is configured to ground out all of the first set of antenna elements except for the selected director, and ground out all of the second set of antenna elements except for the selected reflector.

18. The selector module of claim 17 , wherein the first switch assembly is configured to connect the selected director to the capacitor and electrically connect the all of the first set of antenna elements except for the selected director to the ground plane, and

wherein the second switch assembly is configured to connect the selected reflector to the inductor and electrically connect the all of the second set of antenna elements except for the selected reflector to the ground plane.

19. The selector module of claim 15 , wherein the driven element is not connected to the first switching assembly or the second switching assembly such that no switches are provided in a signal path of the driven element.

20. A method comprising receiving information indicative of a relative location between an in-flight aircraft and a base station; and operating a selector module to select individual elements from among concentric sets of antenna elements of an antenna assembly as parasitic elements to form a directive beam from the antenna assembly of the in-flight aircraft to the base station based on the information, wherein the concentric sets of antenna elements include a first set of antenna elements disposed a first distance from a driven element such that each element of the first set of antenna elements is equidistant from adjacent elements of the first set of antenna elements, and a second set of antenna elements disposed a second distance from the driven element such that each element of the second set of antenna elements is equidistant from adjacent elements of the second set of antenna elements, the second distance being larger than the first distance, wherein the directive beam is formed by controlling the selector module to select only one element of the first set of antenna elements as a selected director, and select only one element of the second set of antenna elements as a selected reflector by effectively shortening a length of the selected director and effectively lengthening the selected reflector.

Assignments (2)
SECURITY INTEREST Recorded May 9, 2023
From: SMARTSKY NETWORKS, LLC
To: WILMINGTON SAVINGS FUND SOCIETY, FSB, AS AGENT
Reel/Frame 063779/0317 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2021
From: HAYES, GERARD JAMES; TAKAMIZAWA, KOICHIRO; LEGVOLD, JAMES O.; ESKRIDGE, ELBERT STANFORD, JR.; BARTS, MIKE; SWARTZ, JOHN
To: SMARTSKY NETWORKS LLC
Reel/Frame 056529/0430 →
Continuity (2)
Provisional Application 62773031 · Nov 29, 2018
Related Publication 20220029291A1 · Jan 27, 2022