IP Library › Granted Patent US 11,558,106
Granted Patent B2
US 11,558,106 · App. 16/938,836 · Granted Jan 17, 2023

Signal interference mitigation for UAVs

Inventor: Gaviphat Lekutai (Kirkland, WA)
Assignee: T-Mobile USA, Inc.
H04B7/18504H04L5/14
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Quick Facts
Patent No.
US 11,558,106
App. No.
16/938,836
Granted
Jan 17, 2023
Kind
B2
Abstract

A communication uplink between a UAV and a base station is established using frequency division duplex (FDD) communication and a communication downlink between the UAV and the base station using time division duplex (TDD) communication. A determination of whether the UAV is located above an antenna height threshold is then made. When the UAV is located above the antenna height threshold, the communication uplink is transitioned from using the FDD communication to using the TDD communication while the use of the TDD communication is continued for the communication downlink. When the UAV is located at or below the antenna height threshold, the use of the FDD communication is continued for the communication uplink and the TDD communication for the communication downlink.

Claims (57)

1. One or more non-transitory computer-readable media of an unmanned aerial vehicle (UAV) communication controller storing computer-executable instructions that upon execution cause one or more computing nodes to perform acts comprising:

determining, for communication frequency switching, whether the UAV is located between an antenna height threshold of one or more base stations and a band switching height threshold that is higher than the antenna height threshold when the UAV is within a predetermined distance of a base station of the one or more base stations following an establishment of a communication uplink between the UAV and the base station using frequency division duplex (FDD) communication and a communication downlink between the UAV and the base station using time division duplex (TDD) communication;

in response to determining that the UAV is located between the antenna height threshold and the band switching height threshold, implementing the communication uplink via at least a high-frequency communication band; and

in response to determining that the UAV is not located between the antenna height threshold and the band switching height threshold, implementing the communication uplink via at least a mid-frequency communication band or a low-frequency communication band.

2. The one or more non-transitory computer-readable media of claim 1 , wherein determining whether the UAV is located above an antenna height threshold includes receiving an altitude of the UAV from the UAV or determining the altitude of the UAV via radio triangulation.

3. The one or more non-transitory computer-readable media of claim 1 , wherein in the acts further comprise:

determining, for switching between the FDD communication and the TDD communication, whether the UAV is located above an antenna height threshold of the one or more base stations;

in response to the UAV being located above the antenna height threshold of the one or more base stations, transitioning from using the FDD communication to using the TDD communication for the communication uplink while continuing use of the TDD communication for the communication downlink; and

in response to the UAV being located at or below the antenna height threshold of the one or more base stations, continuing use of the FDD communication for the communication uplink and the TDD communication for the communication downlink.

4. The one or more non-transitory computer-readable media of claim 3 , wherein the transitioning includes sending a command to the base station or the UAV to direct the use of the TDD communication instead of the FDD communication.

5. The one or more non-transitory computer-readable media of claim 1 , wherein the implementing the communication uplink includes combining a use of the high-frequency communication band, the mid-frequency communication band, or the low-frequency communication band with a use of an unlicensed frequency band.

6. The one or more non-transitory computer-readable media of claim 1 , wherein the low-frequency communication band includes a band of 600-800 MHz, the mid-frequency communication band includes a band of 1900-3700 MHz, and the high-frequency communication band includes a band of 24-39 GHz.

7. The one or more non-transitory computer-readable media of claim 1 , wherein the implementing the communication uplink includes sending a command to the base station or the UAV to direct the use of a corresponding communication band for the communication uplink.

8. The one or more non-transitory computer-readable media of claim 1 , wherein the acts further comprise:

determining, for the communication frequency switching, whether the UAV is located at or below the band switching height when the UAV is not within the predetermined distance of the base station;

in response to determining that the UAV is located at or below the band switching height threshold, implementing the communication uplink via at least the mid-frequency communication band or the low-frequency communication band; and

in response to determining that the UAV is above the band switching height threshold, implementing the communication uplink via at least the high-frequency communication band.

9. The one or more non-transitory computer-readable media of claim 1 , wherein the acts further comprise:

in response to determining that the UAV is located at or below the band switching height threshold, implementing the communication downlink via at least the high-frequency communication band; and

in response to determining that the UAV is located above the band switching height threshold, implementing the communication downlink via at least the mid-frequency communication band or the low-frequency communication band.

10. The one or more non-transitory computer-readable media of claim 9 , wherein the implementing the communication downlink includes sending a command to the base station or the UAV to direct the use of a corresponding communication band for the communication downlink.

11. The one or more non-transitory computer-readable media of claim 1 , wherein the acts further comprise:

determining, for the communication frequency switching, whether the UAV is located below the band switching height when the UAV is not within the predetermined distance of the base station;

in response to determining that the UAV is located at or below the band switching height threshold, implementing the communication downlink via at least a mid-frequency communication band or a low-frequency communication band; and

in response to determining that the UAV is located above the band switching height threshold, implementing the communication downlink via at least a high-frequency communication band.

12. The one or more non-transitory computer-readable media of claim 1 , wherein the acts further comprise:

determining whether the UAV is traveling faster than a predetermined speed threshold when the base station is communicating with the UAV via at least the high-frequency communication band; and

in response to determining that the UAV is traveling faster than the predetermined speed threshold, transitioning the communication uplink and the communication downlink from using the high-frequency communication band to using the mid-frequency communication band or the low-frequency communication band.

13. The one or more non-transitory computer-readable media of claim 1 , wherein the base station is a 4G base station or a 5G base station.

14. A system, comprising:

one or more processors; and

memory including a plurality of computer-executable components of a server application that are executable by the one or more processors to perform a plurality of actions, the plurality of actions comprising:

determining, for communication frequency switching, a location of an unmanned aerial vehicle (UAV) relative to at least one of an antenna height threshold of one or more base stations and a band switching height threshold that is higher than the antenna height threshold when the UAV is within a predetermined distance of a base station of the one or more base stations following an establishment of a communication uplink between the UAV and the base station using frequency division duplex (FDD) communication and a communication downlink between the UAV and the base station using time division duplex (TDD) communication;

in response to determining that the UAV is located below the band switching height threshold, implementing the communication downlink via at least a high-frequency communication band; and

in response to determining that the UAV is above the band switching height threshold, implementing the communication downlink via at least a mid-frequency communication band or a low-frequency communication band.

15. The system of claim 14 , wherein the actions further comprise:

in response to determining that the UAV is located between the antenna height threshold and the band switching height threshold, implementing the communication uplink via at least the high-frequency communication band; and

in response to determining that the UAV is not located between the antenna height threshold and the band switching height threshold, implementing the communication uplink via at least the mid-frequency communication band or the low-frequency communication band.

16. The system of claim 14 , wherein the actions further comprise:

determining, for the communication frequency switching, whether the UAV is located at or below the band switching height threshold that is higher than the antenna height threshold when the UAV is not within the predetermined distance of the base station;

in response to determining that the UAV is located at or below the band switching height threshold, implementing the communication uplink via at least the mid-frequency communication band or the low-frequency communication band; and

in response to determining that the UAV is located above the band switching height threshold, implementing the communication uplink via at least the high-frequency communication band.

17. The system of claim 14 , wherein the acts further comprise:

determining, for switching between the FDD communication and the TDD communication, whether the UAV is located above the antenna height threshold of the one or more base stations;

in response to the UAV being located above the antenna height threshold of the one or more base stations, transitioning from using the FDD communication to using the TDD communication for the communication uplink while continuing use of the TDD communication for the communication downlink; and

in response to the UAV being located at or below the antenna height threshold of the one or more base stations, continuing use of the FDD communication for the communication uplink and the TDD communication for the communication downlink.

18. The system of claim 14 , wherein the acts further comprise:

determining, for the communication frequency switching, whether the UAV is located below the band switching height threshold that is higher than the antenna height threshold when the UAV is not within the predetermined distance of the base station;

in response to determining that the UAV is located at or below the band switching height threshold, implementing the communication downlink via at least the mid-frequency communication band or the low-frequency communication band; and

in response to determining that the UAV is located above the band switching height threshold, implementing the communication downlink via at least the high-frequency communication band.

19. The system of claim 14 , wherein the acts further comprise:

determining whether the UAV is traveling faster than a predetermined speed threshold when the base station is communicating with the UAV via at least the high-frequency communication band; and

in response to determining that the UAV is traveling faster than the predetermined speed threshold, transitioning the communication uplink and the communication downlink from using the high-frequency communication band to using the mid-frequency communication band or the low-frequency communication band.

20. A computer-implemented method, comprising:

determining, at one or more computing devices, whether an unmanned aerial vehicle (UAV) is located between an antenna height threshold of one or more base stations and a band switching height threshold that is higher than the antenna height threshold when the UAV is within a predetermined distance of a base station of the one or more base stations following an establishment of a communication uplink between the UAV and the base station using frequency division duplex (FDD) communication and a communication downlink between the UAV and the base station using time division duplex (TDD) communication;

in response to determining that the UAV is located between the antenna height threshold and the band switching height threshold, implementing the communication uplink via at least a high-frequency communication band; and

in response to determining that the UAV is not located between the antenna height threshold and the band switching height threshold, implementing the communication uplink via at least a mid-frequency communication band or a low-frequency communication band.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 24, 2020
From: LEKUTAI, GAVIPHAT
To: T-MOBILE USA, INC.
Reel/Frame 053309/0124 →
Continuity (1)
Related Publication 20220029695A1 · Jan 27, 2022
Cited By (1)
US 12,481,070