Higher order floquet mode scattering symmetric dual polarized radiating element
A system having a radiating element is disclosed. The radiating element may include a plurality of higher order floquet mode scattering (HOFS) layers including at least a lowest layer unit cell, a middle layer unit cell, and a highest layer unit cell. The radiating element may also include a stripline feed layer having a ground plane layer. The ground plane layer is configured in at least one of a non-equilateral triangular grid unit cell or an equilateral triangular grid., one or more horizontal and vertical polarization stripline feeds, one or more horizontal and vertical polarization ground plane slots, and one or more ground vias to create an evanescent waveguide for resonance free stripline to radiating element coupling. The radiating element may be dual-polarized aperture coupled with an active electronically scanned array (AESA) in a manner so as to enable the AESA to electronically steer a beam of radio waves to point in different directions without moving the AESA and radiate beams of radio waves at multiple frequencies simultaneously.
1. A radiating element comprising:
a plurality of higher order floquet mode scattering (HOFS) layers including at least a lowest layer unit cell, a middle layer unit cell, and a highest layer unit cell; and
a stripline feed layer comprising: a ground plane layer, one or more horizontal and vertical polarization stripline feeds, one or more horizontal and vertical polarization ground plane slots, and one or more ground vias, wherein the stripline feed layer creates an evanescent waveguide for resonance free stripline to radiating element coupling;
wherein the radiating element is aperture coupled with an active electronically scanned array (AESA) in a manner so as to enable the AESA to electronically steer a beam of radio waves to point in different directions without moving the AESA and radiate beams of radio waves at multiple frequencies simultaneously.
2. The radiating element of claim 1 , wherein each of the at least the lowest layer unit cell, the middle layer unit cell, and the highest layer unit cell comprises a low loss FR-4 material and a PCB metal.
3. The radiating element of claim 1 , wherein the stripline feed layer comprises two or more low loss FR-4 cores.
4. The radiating element of claim 1 , wherein the radiating element is associated with a phased array antenna comprising Active Electronically Scanned Arrays (AESA).
5. The radiating element of claim 1 , wherein each of the stripline feed layer, the low layer, the middle layer, and the high layer is made up of low loss material and PCB metal.
6. The radiating element of claim 1 , wherein the radiating element facilitates scan performance and frequency bandwidth by at least one of: having a 0.3125λ2 unit cell, reducing module count, and being symmetrical to minimize cross talk between horizontal and vertical polarizations and cross polarization in inter-cardinal plane scans.
7. The radiating element of claim 1 , wherein the ground plane layer is configured in at least one of a non-equilateral triangular grid unit cell or an equilateral triangular grid.
8. A system comprising:
a radiating element comprising:
a plurality of higher order floquet mode scattering (HOFS) layers, comprising a lowest layer unit cell, a middle layer unit cell, and a highest layer unit cell; and
a stripline feed layer comprising at least one of a ground plane layer, one or more horizontal and vertical polarization stripline feeds, one or more horizontal and vertical polarization ground plane slots, or one or more ground vias, wherein the stripline feed layer creates an evanescent waveguide for resonance free stripline to radiating element coupling;
wherein the radiating element is aperture coupled with an active electronically scanned array (AESA) in a manner so as to enable the AESA to electronically steer a beam of radio waves to point in different directions without moving the AESA and radiate beams of radio waves at multiple frequencies simultaneously.
9. The system of claim 8 , wherein the radiating element facilitates scan performance and frequency bandwidth.
10. The system of claim 8 , wherein the radiating element is a higher order floquet mode scattering (HOFS) symmetric dual polarized radiating element.
11. The system of claim 8 , wherein the radiating element is associated with phased array antenna comprising Active Electronically Scanned Arrays (AESA).
12. The system of claim 8 , wherein the stripline feed layer, lowest layer unit cell, middle layer unit cell, and highest layer unit cell are arranged in a printed circuit board (PCB) stack.
13. The system of claim 12 , wherein the printed circuit board (PCB) stack is arranged as follows: the low layer unit cell is provided on top of the stripline feed layer; the middle layer unit cell is provided on top of the lowest layer unit cell; and the highest layer unit cell is provided on top of the middle layer unit cell.
14. The system of claim 8 , wherein each of the stripline feed layer, the lowest layer unit cell, the middle layer unit cell, and the highest layer unit cell is made up of low loss material and PCB metal.
15. The system of claim 14 , wherein the low loss material is a flame retardant epoxy resin (FR4) material.
16. The system of claim 8 , wherein the radiating element facilitates scan performance and frequency bandwidth by at least one of: having a 0.3125λ2 unit cell, reducing module count, or being symmetrical to minimize cross talk between horizontal and vertical polarizations and cross polarization in inter-cardinal plane scans.
17. The system of claim 8 , wherein the ground plane layer is configured in at least one of a non-equilateral triangular grid unit cell or an equilateral triangular grid.
18. An apparatus comprising a higher order floquet mode scattering symmetrical dual polarized radiating element, the radiating element comprising:
a plurality of higher order floquet mode scattering (HOFS) layers including at least a lowest layer unit cell, a middle layer unit cell, and a highest layer unit cell, each comprising low loss flame retardant epoxy resin (FR-4) material and a PCB metal; and
a stripline feed layer comprising two or more low loss FR-4 cores, wherein the stripline feed layer further comprises a ground plane layer, one or more horizontal and vertical polarization stripline feeds, one or more horizontal and vertical polarization ground plane slots, and one or more ground vias to create an evanescent waveguide for resonance free stripline to radiating element coupling.
19. The apparatus of claim 18 , wherein the radiating element is associated with a phased array antenna comprising Active Electronically Scanned Arrays (AESA) in a manner so as to enable the AESA to electronically steer a beam of radio waves to point in different directions without moving the AESA and radiate beams of radio waves at multiple frequencies simultaneously.
20. The apparatus of claim 18 , wherein the ground plane layer is configured in at least one of a non-equilateral triangular grid unit cell or an equilateral triangular grid.