IP Library Granted Patent US 11,876,597
Granted Patent B2
US 11,876,597 · App. 17/367,323 · Granted Jan 16, 2024

Enhanced LDACS system combined with cellular telephone ground stations and associated methods

Inventors: Shawn H. Gallagher (Melbourne, FL); Eric J. Salyers (Grant, FL); Timothy Huggins (Cocoa Beach, FL); Ivica Kostanic (West Melbourne, FL); Edward Paulsen (Indialantic, FL); Daniel Schwinn (Melbourne Beach, FL)
Assignee: SKYSTREAM LLC
H04B7/18508G01S13/878G08G5/0013H04B7/15542H04B7/1855H04B7/18502H04B7/18506H04B7/18517H04B7/18519H04B7/18532H04B7/18541H04B7/18571H04B7/18584H04B7/18591H04W8/02H04W12/009H04W12/03H04W12/06H04W12/10H04W16/18H04W36/08H04W40/24H04W72/0453H04W72/56H04W80/02H04W84/18
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Quick Facts
Patent No.
US 11,876,597
App. No.
17/367,323
Granted
Jan 16, 2024
Kind
B2
Abstract

An enhanced L-band Digital Aeronautical Communications System (LDACS) may include cellular telephone ground stations, and LDACS ground stations. In addition, the enhanced LDACS may also include a plurality of LDACS airborne stations, each configured to selectively communicate with either a corresponding LDACS ground station or a corresponding cellular telephone ground station based upon an altitude of the LDACS airborne station.

Claims (37)

1. An enhanced L-band Digital Aeronautical Communications System (LDACS) comprising:

a plurality of cellular telephone ground stations;

a plurality of LDACS ground stations operable at different frequencies than the plurality of cellular telephone ground stations; and

a plurality of LDACS airborne stations, each configured to selectively communicate directly with either a corresponding LDACS ground station or a corresponding cellular telephone ground station based upon an altitude of the LDACS airborne station.

2. The enhanced LDACS of claim 1 , wherein each LDACS airborne station comprises:

a cellular telephone transceiver;

an LDACS transceiver; and

a controller to switch between the cellular telephone transceiver and the LDACS transceiver.

3. The enhanced LDACS of claim 2 , wherein the controller is configured to switch using a make-before-break handover.

4. The enhanced LDACS of claim 2 , wherein the cellular telephone transceiver comprises an LTE transceiver.

5. The enhanced LDACS of claim 2 , wherein each LDACS airborne station comprises a satellite transceiver; and wherein the controller is configured to switch to the satellite transceiver instead of the cellular telephone transceiver when coverage with the corresponding cellular telephone ground station is unavailable.

6. The enhanced LDACS of claim 2 , comprising an altitude sensor coupled to the controller.

7. The enhanced LDACS of claim 1 , wherein each of the plurality of LDACS ground stations comprises:

a ground antenna;

a ground radio frequency (RF) transceiver coupled to the ground antenna; and

a ground controller coupled to the ground RF transceiver.

8. The enhanced LDACS of claim 1 , wherein each LDACS airborne station comprises a first antenna coupled to the cellular telephone transceiver; and a second antenna coupled to the LDACS transceiver.

9. The enhanced LDACS of claim 1 , wherein the plurality of LDACS ground stations and LDACS airborne stations are configured to operate within at least one 500 kHz channel in a frequency range of between 964-1156 MHz.

10. The enhanced LDACS of claim 1 , wherein at least one of the plurality of LDACS airborne stations comprises an unmanned airborne station.

11. An enhanced L-band Digital Aeronautical Communications System (LDACS) airborne station comprising:

a cellular telephone transceiver configured to communicate directly with a given one of a plurality of cellular telephone ground stations;

an LDACS transceiver configured to communicate directly with a given one of a plurality of LDACS ground stations, the LDACS transceiver configured to operate over different frequencies than the cellular telephone transceiver; and

a controller configured to switch between the cellular telephone transceiver and the LDACS transceiver based upon an altitude of the LDACS airborne station.

12. The enhanced LDACS airborne station of claim 11 , wherein the controller is configured to switch using a make-before-break handover.

13. The enhanced LDACS airborne station of claim 11 , wherein the cellular telephone transceiver comprises an LTE transceiver.

14. The enhanced LDACS airborne station of claim 11 , comprising a satellite transceiver; and wherein the controller is configured to switch to the satellite transceiver instead of the cellular telephone transceiver when cellular coverage with a corresponding cellular telephone ground station is unavailable.

15. The enhanced LDACS airborne station of claim 11 , comprising an altitude sensor coupled to the controller.

16. The enhanced LDACS airborne station of claim 11 , comprising:

a first antenna coupled to the cellular telephone transceiver; and

a second antenna coupled to the LDACS transceiver.

17. The enhanced LDACS airborne station of claim 11 , wherein the LDACS transceiver is configured to operate within at least one 500 kHz channel in a frequency range of between 964-1156 MHz.

18. A method of operating an enhanced L-band Digital Aeronautical Communications System (LDACS) comprising a plurality of cellular telephone ground stations, a plurality of LDACS ground stations operable over different frequencies than the plurality of cellular telephone ground stations, and a plurality of LDACS airborne stations, the method comprising:

operating an LDACS airborne station to selectively communicate directly with either a corresponding LDACS ground station or a corresponding cellular telephone ground station based upon an altitude of the LDACS airborne station.

19. The method of claim 18 , comprising switching using a make-before-break handover.

20. The method of claim 18 , wherein communicating with the cellular telephone ground station comprises communicating using an LTE transceiver.

21. The method of claim 18 , comprising switching to a satellite transceiver when coverage with the corresponding cellular telephone ground station is unavailable.

22. The method of claim 18 , comprising sensing the altitude of the LDACS airborne station using an altitude sensor of the LDACS airborne station.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2021
From: GALLAGHER, SHAWN H.; SALYERS, ERIC J.; HUGGINS, TIMOTHY; KOSTANIC, IVICA; PAULSEN, EDWARD; SCHWINN, DANIEL
To: SKYSTREAM LLC
Reel/Frame 057188/0918 →
Continuity (2)
Provisional Application 63050131 · Jul 10, 2020
Related Publication 20220014262A1 · Jan 13, 2022