IP Library Granted Patent US 10,837,769
Granted Patent B2
US 10,837,769 · App. 16/444,233 · Granted Nov 17, 2020

Systems and methods for locating ground and air radio antennae for ground-to-air and air-to-air communications networks

Inventor: James W. Herriot (Palo Alto, CA)
Assignee: SMARTSKY NETWORKS LLC
G01B21/16H04W16/18
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Quick Facts
Patent No.
US 10,837,769
App. No.
16/444,233
Granted
Nov 17, 2020
Kind
B2
Abstract

The present disclosure provides a method and a system for determining locations of telecommunication ground stations. In one aspect, the method includes creating heat map data set representing air traffic volume at grid units of a geographic region, determining a ground station location at one of the grid units having air traffic volume greater than that of others of the grid units, modifying the heat map data by excluding data representing one or more of the grid units surrounding the ground station location, and repeating the determining and modifying steps until a predetermined quantity of ground station locations is determined.

Claims (34)

1. A method for managing a mobile mesh network including a plurality of aircraft and ground stations of an air-to-ground (ATG) network, the method comprising:

determining a location and corresponding coverage area for a plurality of ground stations defining coverage areas that have at least some gaps therebetween;

passively observing flight path trajectories of a plurality of aircraft and assigning a mobile coverage area to at least some of the corresponding flight path trajectories;

determining a probabilistic effect on network connectivity and bandwidth of the flight path trajectories; and

actively commanding some flight path trajectories to maintain uniform levels of network connectivity and bandwidth.

2. The method of claim 1 , wherein assigning the mobile coverage area comprises defining a halo of a predetermined distance around aircraft that are part of the mobile mesh network.

3. The method of claim 2 , wherein actively commanding some flight path trajectories comprises actively commanding a trajectory of one or more aircraft in order to maintain the uniform levels of network connectivity and bandwidth while maintaining air traffic safety objectives.

4. The method of claim 2 , wherein the halo is displayed with a distinct color indicative of which one of the ground stations is most likely to serve an aircraft associated with the halo.

5. The method of claim 2 , wherein assigning the mobile coverage area comprises defining the halo as a moving area associated with predicted future positions of an aircraft associated with the halo based on a predicted flight path of the aircraft associated with the halo.

6. The method of claim 5 , wherein the predicted flight path is determined based on air traffic data including an origin and destination of a flight associated with the aircraft.

7. The method of claim 1 , further comprising:

dividing a geographic area into a plurality of grid squares;

counting a number of hits for each grid square based on a number of flights having a trajectory within a predetermined communication distance of the each grid square; and

determining air traffic volume based on the number of hits.

8. The method of claim 7 , counting the number of hits further comprises incrementing the number of hits based on flights having a halo of a predefined distance around an aircraft associated with the halo that intersects with the each grid square.

9. The method of claim 1 , wherein maintaining uniform levels of network connectivity and bandwidth comprises maintaining network switching speeds.

10. The method of claim 1 , wherein maintaining uniform levels of network connectivity and bandwidth comprises maintaining a latency value or a given budget for network switching speed.

11. A network managing device for managing a mobile mesh network including a plurality of aircraft and ground stations of an air-to-ground (ATG) network, the device comprising processing circuitry configured to:

determine a location and corresponding coverage area for a plurality of ground stations defining coverage areas that have at least some gaps therebetween;

passively observe flight path trajectories of a plurality of aircraft and assign a mobile coverage area to at least some of the corresponding flight path trajectories;

determine a probabilistic effect on network connectivity and bandwidth of the flight path trajectories; and

actively commanding some flight path trajectories to maintain uniform levels of network connectivity and bandwidth.

12. The network managing device of claim 11 , wherein assigning the mobile coverage area comprises defining a halo of a predetermined distance around aircraft that are part of the mobile mesh network.

13. The network managing device of claim 12 , wherein actively commanding some flight path trajectories comprises actively commanding a trajectory of one or more aircraft in order to maintain the uniform levels of network connectivity and bandwidth while maintaining air traffic safety objectives.

14. The network managing device of claim 12 , wherein the halo is displayed with a distinct color indicative of which one of the ground stations is most likely to serve an aircraft associated with the halo.

15. The network managing device of claim 12 , wherein assigning the mobile coverage area comprises defining the halo as a moving area associated with predicted future positions of an aircraft associated with the halo based on a predicted flight path of the aircraft associated with the halo.

16. The network managing device of claim 15 , wherein the predicted flight path is determined based on air traffic data including an origin and destination of a flight associated with the aircraft.

17. The network managing device of claim 11 , wherein the device is further configured for:

dividing a geographic area into a plurality of grid squares;

counting a number of hits for each grid square based on a number of flights having a trajectory within a predetermined communication distance of the each grid square; and

determining air traffic volume based on the number of hits.

18. The network managing device of claim 17 , counting the number of hits further comprises incrementing the number of hits based on flights having a halo of a predefined distance around an aircraft associated with the halo that intersects with the each grid square.

19. The network managing device of claim 11 , wherein maintaining uniform levels of network connectivity and bandwidth comprises maintaining network switching speeds.

20. The network managing device of claim 11 , wherein maintaining uniform levels of network connectivity and bandwidth comprises maintaining a latency value or a given budget for network switching speed.

Assignments (6)
SECURITY INTEREST Recorded May 9, 2023
From: SMARTSKY NETWORKS, LLC
To: WILMINGTON SAVINGS FUND SOCIETY, FSB, AS AGENT
Reel/Frame 063779/0317 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME PREVIOUSLY RECORDED AT REEL: 049950 FRAME: 0480. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Aug 6, 2019
From: HERRIOT, JAMES
To: NEXTGEN AEROSCIENCES, LLC
Reel/Frame 049968/0045 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2019
From: HERRIOT, JAMES
To: SMARTSKY NETWORKS LLC
Reel/Frame 049950/0480 →
MERGER AND CHANGE OF NAME Recorded Aug 2, 2019
From: NEXTGEN AEROSCIENCES, LLC; NEXTGEN AEROSCIENCES, INC.
To: NEXTGEN AEROSCIENCES, INC.
Reel/Frame 049950/0546 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2019
From: NEXTGEN AEROSCIENCES, INC.
To: NEXTGEN APPS. CO.
Reel/Frame 049950/0608 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2019
From: NEXTGEN APPS. CO.
To: SMARTSKY NETWORKS LLC
Reel/Frame 049950/0641 →
Continuity (3)
Continuation 13998302 · Oct 18, 2013
Provisional Application 61715437 · Oct 18, 2012
Related Publication 20190323833A1 · Oct 24, 2019