IP Library Granted Patent US 11,044,025
Granted Patent B1
US 11,044,025 · App. 16/721,874 · Granted Jun 22, 2021

Characterizing antenna patterns

Inventors: Gordon Michael Coutts (Santa Clara, CA); Damian Kowalewski (Sunnyvale, CA)
Assignee: FACEBOOK, INC.
H04B17/102G01R29/10H04B17/0085H01Q1/246H01Q1/285
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Quick Facts
Patent No.
US 11,044,025
App. No.
16/721,874
Granted
Jun 22, 2021
Kind
B1
Abstract

in one embodiment, a method includes determining a received power at a receiving antenna mounted to an antenna measurement system from a transmitting antenna mounted to a device under test (DUI) in motion relative to the antenna measurement system; determining one or more first orientation parameters of the antenna measurement system; determining one or more second orientation parameters of the DUT; and determining an antenna pattern of the transmitting antenna based on the received power, the first orientation parameters, and the second orientation parameters.

Claims (54)

1. A method comprising:

determining a polarized signal at a receiving antenna mounted on an antenna measurement system from a transmitting antenna mounted to a device under test (DUT) in motion relative to the antenna measurement system;

determining one or more first orientation parameters that identify at least a first orientation of the antenna measurement system;

determining one or more second orientation parameters that identify at least a second orientation of the DUT; and

determining, by a computing device, an antenna pattern of the transmitting antenna based on a polarization type of the polarized signal, the one or more first orientation parameters, and the one or more second orientation parameters.

2. The method of claim 1 , wherein the DUT in motion relative to the antenna measurement system comprises:

the DUT being stationary and the antenna measurement system in motion;

the DUT in motion and the antenna measurement system being stationary; or

the DUT in motion and the antenna measurement system in motion.

3. The method of claim 1 , wherein determining the antenna pattern of the transmitting antenna is further based on one or more atmospheric effects.

4. The method of claim 1 , wherein the receiving antenna and the transmitting antenna are orthogonally polarized.

5. The method of claim 1 , wherein the antenna measurement system is mounted on an N-copter aerial vehicle, and wherein:

the N-copter aerial vehicle flies around the DUT while the DUT is stationary; and

the receiving antenna receives the polarized signal from the transmitting antenna while the N-copter aerial vehicle moving in relation to the DUT.

6. The method of claim 1 , wherein the antenna measurement system is mounted on a stationary base station, and wherein:

the DUT moves in relation to the base station; and

the receiving antenna receives the polarized signal from the transmitting antenna while the DUT is moving in relation to the base station.

7. The method of claim 1 , wherein the antenna measurement system is mounted on an N-copter aerial vehicle, and wherein:

the N-copter aerial vehicle hovers at a stationary location while the DUT moves in relation to the N-copter aerial vehicle; and

the receiving antenna receives the polarized signal from the transmitting antenna while the DUT is moving in relation to the base station.

8. The method of claim 1 , wherein the antenna measurement system is mounted on an N-copter aerial vehicle, and wherein:

the N-copter aerial vehicle flies around the DUT while the DUT is in flight; and

the receiving antenna receives the polarized signal from the transmitting antenna while the N-copter aerial vehicle is moving in relation to the DUT.

9. The method of claim 1 , wherein the antenna measurement system is mounted on ground vehicle, and wherein:

the ground vehicle travels near the DUT while the DUT is in flight; and

the receiving antenna receives the polarized signal from the transmitting antenna while the ground vehicle is moving in relation to the DUT.

10. The method of claim 1 , wherein the first orientation parameters comprise a roll, a pitch, a yaw, an altitude, a latitude, a longitude, or an orientation of the receiving antenna; and the second orientation parameters comprise a roll, a pitch, a yaw, an altitude, a latitude, a longitude, or an orientation of the transmitting antenna.

11. The method of claim 1 , wherein determining the polarized signal is accomplished using Friis Transmission Equation.

12. One or more non-transitory computer-readable storage media storing instructions that, when executed by a processor, cause the processor to:

determine a polarized signal at a receiving antenna mounted on an antenna measurement system from a transmitting antenna mounted to a device under test (DUT) in motion relative to the antenna measurement system;

determine one or more first orientation parameters that identify at least a first orientation of the antenna measurement system;

determine one or more second orientation parameters that identify at least a second orientation of the DUT; and

determine an antenna pattern of the transmitting antenna based on a polarization type of the polarized signal, the one or more first orientation parameters, and the one or more second orientation parameters.

13. The computer-readable storage media of claim 12 , wherein the DUT in motion relative to the antenna measurement system comprises:

the DUT being stationary and the antenna measurement system in motion;

the DUT in motion and the antenna measurement system being stationary; or

the DUT in motion and the antenna measurement system in motion.

14. The computer-readable storage media of claim 12 , wherein determining the antenna pattern of the transmitting antenna is further based on one or more atmospheric effects.

15. The computer-readable storage media of claim 12 , wherein the receiving antenna and the transmitting antenna are orthogonally polarized.

16. The computer-readable storage media of claim 12 , wherein the antenna measurement system is mounted on an N-copter aerial vehicle, and wherein:

the N-copter aerial vehicle flies around the DUT while the DUT is stationary; and

the receiving antenna receives the polarized signal from the transmitting antenna while the N-copter aerial vehicle moving in relation to the DUT.

17. A system comprising:

one or more processors; and

a memory coupled to the processors comprising instructions executable by the processors, the processors being operable when executing the instructions to:

determine a polarized signal at a receiving antenna mounted on an antenna measurement system from a transmitting antenna mounted to a device under test (DUT) in motion relative to the antenna measurement system;

determine one or more first orientation parameters that identify at least a first orientation of the antenna measurement system;

determine one or more second orientation parameters that identify at least a second orientation of the DUT; and

determine an antenna pattern of the transmitting antenna based on a polarization type of the polarized signal, the one or more first orientation parameters, and the one or more second orientation parameters.

18. The system of claim 17 , wherein determining the antenna pattern of the transmitting antenna is further based on one or more atmospheric effects.

19. The system of claim 17 , wherein the receiving antenna and the transmitting antenna are orthogonally polarized.

20. The system of claim 17 , wherein the antenna measurement system is mounted on an N-copter aerial vehicle, and wherein:

the N-copter aerial vehicle flies around the DUT while the DUT is stationary; and

the receiving antenna receives the polarized signal from the transmitting antenna while the N-copter aerial vehicle moving in relation to the DUT.

Assignments (2)
CHANGE OF NAME Recorded Jan 3, 2022
From: FACEBOOK, INC.
To: META PLATFORMS, INC.
Reel/Frame 058605/0840 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 9, 2020
From: COUTTS, GORDON MICHAEL; KOWALEWSKI, DAMIAN
To: FACEBOOK, INC.
Reel/Frame 052048/0831 →
Continuity (1)
Continuation 15392937 · Dec 28, 2016