METHOD AND APPARATUS FOR AN ORTHOGONAL ANTENNA ARRAY SYSTEM
Examples disclosed herein relate to a radiating structure including a first metamaterial array having a plurality of elements, a second metamaterial array having a plurality of elements, a transceiver coupled to the first and second metamaterial arrays, and an antenna controller configured to adjust the first metamaterial array to scan angles in a first direction and adjust the second metamaterial array to scan angles in a second direction orthogonal to the first direction.
1 . A radiating structure, comprising:
a first metamaterial array having a plurality of elements;
a second metamaterial array having a plurality of elements;
a transceiver coupled to the first and second metamaterial arrays; and
an antenna controller configured to adjust the first metamaterial array to scan angles in a first direction and adjust the second metamaterial array to scan angles in a second direction orthogonal to the first direction.
2 . The radiating structure of claim 1 , further comprising:
a first feed network coupled between the transceiver and the first metamaterial array; and
a second feed network coupled between the transceiver and the second metamaterial array.
3 . The radiating structure of claim 1 , wherein to adjust the first metamaterial array comprises to adjust a reactance of the first metamaterial array.
4 . The radiating structure of claim 4 , wherein to adjust the second metamaterial array comprises to adjust a reactance of the second metamaterial array.
5 . The radiating structure of claim 4 , wherein the antenna controller is configured to adjust the first reactance and the second reactance to achieve scan angles having at least one overlap region.
6 . An antenna system to identify an object in a field of view, the antenna system comprising:
a plurality of meta-structure transmit antennas;
a plurality of meta-structure receive antennas orthogonal to the plurality of meta-structure transmit antennas; and
an antenna controller to select one or more meta-structure transmit antennas from the plurality of meta-structure transmit antennas and one or more receive antennas from the plurality of meta-structure receive antennas as instructed by a decision engine in an object detection module.
7 . The antenna system of claim 6 , further comprising a transceiver coupled to the plurality of meta-structure transmit antennas and the plurality of meta-structure receive antennas.
8 . The antenna system of claim 6 , wherein the plurality of meta-structure transmit antennas transmit signals in a horizontal direction and the plurality of meta-structure receive antennas transmit signals in a vertical direction.
9 . The antenna system of claim 6 , wherein each meta-structure transmit antenna has an associated transmit beamform.
10 . The antenna system of claim 9 , wherein each meta-structure receive antenna has an associated receive beamform.
11 . The antenna system of claim 10 , wherein the associated transmit beamform for each meta-structure transmit antenna and the associated receive beamform for each meta-structure receive antenna form an active aperture.
12 . The antenna system of claim 6 , further comprising an array of meta-structure elements configured into a plurality of subarrays.
13 . The antenna system of claim 12 , wherein a subarray from the array of meta-structure elements is aligned with a set of super elements in a meta-structure transmit antenna and another subarray from the array of meta-structure elements is aligned with a set of super elements in a meta-structure receive antenna.
14 . The antenna system of claim 12 , wherein the array of meta-structure elements comprises an array of metamaterial cells.
15 . A method of operating an orthogonal antenna system having an active aperture, comprising:
identifying a target field of view;
identifying a set of transmit antennas for the target field of view;
identifying a set of receive antennas for the target field of view, the set of receive antennas orthogonal to the set of transmit antennas;
generating a set of transmission signals;
determining if there is a change in the target field of view to identify a new field of view; and
determining a new configuration of transmit and receive antennas based upon a detection of an object in the new field of view.
16 . The method of claim 15 , wherein the set of transmit antennas comprises a set of meta-structure transmit antennas.
17 . The method of claim 15 , wherein the set of receive antennas comprises a set of meta-structure receive antennas.
18 . The method of claim 15 , wherein determining if there is a change in the target field of view comprises detecting an object in the target field of view.
19 . The method of claim 15 , wherein determining a new configuration of transmit and receive antennas comprises determining a new active aperture.
20 . The method of claim 19 , wherein the new active aperture is correlated with the new field of view.