IP Library Granted Patent US 11,005,189
Granted Patent B2
US 11,005,189 · App. 16/744,251 · Granted May 11, 2021

Technique for reconstruction of radiation patterns for antennas working in close proximity of conductive bodies

Inventor: Naftali Herscovici (Faiborn, OH)
Assignee: United States of America as represented by the Secretary of the Air Force
H01Q21/067H01Q1/48H01Q15/14H01Q21/0037
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Quick Facts
Patent No.
US 11,005,189
App. No.
16/744,251
Granted
May 11, 2021
Kind
B2
Abstract

An antenna assembly minimizes reflection from a proximate reflective surface over a wide band and over a wide range of incident angles as a multi-layer diffuser. The planar structure includes first and second planar layers, each layer having first areas that are more conductive than second areas. Each area has a periphery that extends along a grid of first and second sets of parallel lines so that each area comprises one or more contiguous elements defined by the lines. The first and second areas are configured and arranged so that the planar layer can communicate electromagnetic energy wirelessly in a specific direction to the planar layer when an electrical connection is made to the first area(s). The first planar layer is positioned on top of the second planar layer. The respective second areas of second planar layer aligned with a corresponding second area of the first planar layer.

Claims (17)

1. An antenna assembly, comprising:

a planar structure that minimizes the reflection from a proximate reflective surface over a wide band and over a wide range of incident angles, the planar structure comprising:

a first planar layer and a second planar layer, each having a plurality of first areas and a plurality of second areas, the first areas being more conductive than the second areas,

wherein each area has a periphery that extends along a grid of first and second sets of parallel lines so that each area comprises one or more contiguous elements defined by the lines, and

wherein the first and second areas are configured and arranged so that the planar layer can communicate electromagnetic energy wirelessly in a specific direction to the planar layer when an electrical connection is made to at least one of the first areas,

wherein the first planar layer is positioned on top of the second planar layer, the respective second areas of second planar layer aligned with a corresponding second area of the first planar layer; and

a finite ground plane that acts as the proximate reflective surface;

an endfire antenna, wherein the planar structure is positioned proximate to the finite ground plane and the endfire antenna.

2. The antenna assembly of claim 1 , wherein the first and second sets of parallel lines are orthogonal, the elements are squares, and each the area is a selected one of: (i) square; (ii) rectangle; and (iii) geometric region having orthogonally diverging contiguous segments.

3. The antenna assembly of claim 1 , wherein the endfire antenna comprises a unidirectional array of waveguide-fed multimode dielectric polyrod antennas.

4. The antenna assembly of claim 1 , wherein the endfire antenna comprises a bidirectional array of waveguide-fed multimode dielectric polyrod antennas.

5. The antenna assembly of claim 1 , wherein the first areas comprise a conductive material.

6. The antenna assembly of claim 5 , wherein the second areas comprise a dielectric material.

7. The antenna assembly of claim 5 , wherein the second areas comprise a semiconductor material.

8. The antenna assembly of claim 1 , wherein the first areas comprise a semiconductor material.

9. The antenna assembly of claim 8 , wherein the second areas comprise a dielectric material.

10. The antenna assembly of claim 8 , wherein the second areas comprise a semiconductor material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2020
From: HERSCOVICI, NAFTALI
To: US GOVERNMENT REPRESENTED BY SECRETARY OF THE AIR FORCE
Reel/Frame 051533/0878 →
Continuity (2)
Provisional Application 62802973 · Feb 8, 2019
Related Publication 20200259270A1 · Aug 13, 2020