IP Library Granted Patent US 8,447,292
Granted Patent B2
US 8,447,292 · App. 11/590,379 · Granted May 21, 2013

Multi-link aircraft cellular system for simultaneous communication with multiple terrestrial cell sites

Inventors: Anand K. Chari (Bartlett, IL); Harold Grant Saroka (Ashburn, VA); Tim Joyce (Naperville, IL); Patrick J. Walsh (Naperville, IL); Yong Liu (Schaumburg, IL); Daniel Bernard McKenna (Vail, CO)
Assignee: GoGo LLC
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Quick Facts
Patent No.
US 8,447,292
App. No.
11/590,379
Granted
May 21, 2013
Kind
B2
Abstract

The Multi-Link Aircraft Cellular System makes use of multiple physically separated antennas mounted on the aircraft, as well as the use of additional optional signal isolation and optimization techniques to improve the call handling capacity of the Air-To-Ground cellular communications network. These additional techniques can include polarization domain and ground antenna pattern shaping (in azimuth, in elevation, or in both planes). Further, if code domain separation is added, dramatic increases in capacity are realized. Thus, the Air-To-Ground cellular communications network can increase its capacity on a per aircraft basis by sharing its traffic load among more than one cell or sector and by making use of multiple physically separated antennas mounted on the aircraft, as well as the use of additional optional signal isolation and optimization techniques.

Claims (90)

1. A system for managing radio frequency communications between a plurality of wireless subscriber devices located in an aircraft and a plurality of Air-To-Ground terrestrial base stations, which are located on the ground, comprising:

a plurality of independently operable radio frequency antennas mounted on the exterior surface of said aircraft;

a transmitter, located in said aircraft, for generating radio frequency communication signals for application to said plurality of independently operable radio frequency antennas to simultaneously maintain multiple Air-To-Ground Radio Frequency communications links with said Air-To-Ground terrestrial base stations independent of a handoff process, to concurrently exchange call traffic between said plurality of wireless subscriber devices and a plurality of said Air-To-Ground terrestrial base stations;

a data flow controller, comprising:

a traffic determination process, responsive to call traffic comprising communications from a plurality of wireless subscriber devices located in said aircraft, for determining the call traffic load presented by the plurality of wireless subscriber devices for transmission to the Air-To-Ground terrestrial base stations and Air-To-Ground Radio Frequency communications link service quality to said Air-To-Ground terrestrial base stations,

a data router, responsive to said call traffic load and Air-To-Ground Radio Frequency communications link service quality, for dividing said call traffic into multiple segments for distribution among said plurality of radio frequency antennas; and

an interface located in said aircraft for simultaneously transmitting each of said multiple segments to an associated one of said plurality of independently operable radio frequency antennas, comprising:

a first polarizer for generating said radio frequency communication signals at a first polarization,

a second polarizer for generating said radio frequency communication signals at a second polarization, which is substantially orthogonal to said first polarization,

a first connection interface for applying a first set of said radio frequency communication signals at said first polarization to a first radio frequency antenna, and a second set of said radio frequency communication signals at said second polarization to said first radio frequency antenna, and

a second connection interface for applying a third set of said radio frequency communication signals at said first polarization to a second radio frequency antenna, and a fourth set of said radio frequency communication signals at said second polarization to said second radio frequency antenna.

2. The system for managing radio frequency communications of claim 1 wherein said plurality of radio frequency antennas comprise:

at least two dual polarization radio frequency antennas mounted on the belly of the aircraft in a physically spaced apart relationship.

3. The system for managing radio frequency communications of claim 1 wherein said plurality of radio frequency antennas comprise:

a first radio frequency antenna mounted on the belly of the aircraft forward of a midline of the aircraft, which comprises the point halfway between the nose and tail of the aircraft; and

a second radio frequency antenna mounted on the belly of the aircraft aft of the midline of the aircraft.

4. The system for managing radio frequency communications of claim 3 wherein said first radio frequency antenna and said second radio frequency antenna are dual polarization antennas.

5. The system for managing radio frequency communications of claim 1 wherein said interface comprises:

a terrestrial base station selection for establishing multiple Air-To-Ground Radio Frequency communications links with selected ones of said plurality of Air-To-Ground terrestrial base stations.

6. The system for managing radio frequency communications of claim 1 wherein said interface comprises:

an Air-To-Ground Radio Frequency communications link monitor for measuring communications link characteristics of a selected Air-To-Ground Radio Frequency communications link to communicate with a selected Air-To-Ground terrestrial base station.

7. The system for managing radio frequency communications of claim 6 wherein said interface further comprises:

a terrestrial base station selection for establishing multiple Air-To-Ground Radio Frequency communications links with selected ones of said plurality of Air-To-Ground terrestrial base stations.

8. The system for managing radio frequency communications of claim 6 wherein said Air-To-Ground Radio Frequency communications link monitor selects a plurality of communications link characteristics from the set of communications link characteristics that include: Radio Frequency, Radio Frequency signal polarization, Air-To-Ground terrestrial base station, multi-dimensional sector of an Air-To-Ground terrestrial base station having multiple multi-dimensional sectors, and Air-To-Ground Radio Frequency communications link handoff candidates.

9. A system for managing radio frequency communications between a plurality of wireless subscriber devices located in an aircraft and a plurality of Air-To-Ground terrestrial base stations, which are located on the ground, comprising:

a plurality of independently operable radio frequency antennas mounted on the exterior surface of said aircraft;

a transmitter, located in said aircraft, for generating radio frequency communication signals for application to said plurality of independently operable radio frequency antennas to simultaneously maintain multiple Air-To-Ground Radio Frequency communications links with a plurality of said Air-To-Ground terrestrial base stations independent of a handoff process, to concurrently exchange call traffic between said plurality of wireless subscriber devices and a plurality of said Air-To-Ground terrestrial base stations;

a data flow controller, comprising:

a traffic determination process, responsive to call traffic comprising communications from a plurality of wireless subscriber devices located in said aircraft, for determining the call traffic load and Air-To-Ground Radio Frequency communications link service quality,

a data router, responsive to said call traffic load and Air-To-Ground Radio Frequency communications link service quality, for dividing said call traffic into multiple segments for distribution among said plurality of radio frequency antennas; and

an interface located in said aircraft for simultaneously transmitting each of said multiple segments to an associated one of said plurality of independently operable radio frequency antennas, comprising:

a first polarizer for generating said radio frequency communication signals at a first polarization,

a second polarizer for generating said radio frequency communication signals at a second polarization, which is substantially orthogonal to said first polarization,

a first connection interface for applying a first set of said radio frequency communication signals at a first polarization to a first radio frequency antenna, and a second set of said radio frequency communication signals at said first polarization to a second radio frequency antenna; and

a second connection interface for applying a third set of said radio frequency communication signals at said second polarization to said first radio frequency antenna, and a fourth set of said radio frequency communication signals at said second polarization to said second radio frequency antenna.

10. The system for managing radio frequency communications of claim 9 wherein said plurality of radio frequency antennas comprises:

at least two dual polarization radio frequency antennas mounted on the belly of the aircraft in a physically spaced apart relationship.

11. The system for managing radio frequency communications of claim 9 wherein said first radio frequency antenna and said second radio frequency antenna are dual polarization antennas.

12. The system for managing radio frequency communications of claim 9 wherein said interface comprises:

a terrestrial base station selection for establishing multiple Air-To-Ground Radio Frequency communications links with selected ones of said plurality of Air-To-Ground terrestrial base stations.

13. The system for managing radio frequency communications of claim 9 wherein said interface comprises:

an Air-To-Ground Radio Frequency communications link monitor for measuring communications link characteristics of a selected Air-To-Ground Radio Frequency communications link to communicate with a selected Air-To-Ground terrestrial base station.

14. The system for managing radio frequency communications of claim 13 wherein said interface further comprises:

a terrestrial base station selection for establishing multiple Air-To-Ground Radio Frequency communications links with selected ones of said plurality of Air-To-Ground terrestrial base stations.

15. The system for managing radio frequency communications of claim 13 wherein said Air-To-Ground Radio Frequency communications link monitor selects a plurality of communications link characteristics from the set of communications link characteristics that include: Radio Frequency, Radio Frequency signal polarization, Air-To-Ground terrestrial base station, multi-dimensional sector of an Air-To-Ground terrestrial base station having multiple multi-dimensional sectors, and Air-To-Ground Radio Frequency communications link handoff candidates.

16. A method for managing radio frequency communications between a plurality of wireless subscriber devices located in an aircraft and a plurality of Air-To-Ground terrestrial base stations, which are located on the ground, comprising:

activating a plurality of independently operable radio frequency antennas mounted on the exterior surface of said aircraft;

generating, in said aircraft, radio frequency communication signals for application to said plurality of independently operable radio frequency antennas to simultaneously maintain multiple Air-To-Ground Radio Frequency communications links with a plurality of said Air-To-Ground terrestrial base stations independent of a handoff process, to concurrently exchange call traffic between said plurality of wireless subscriber devices and a plurality of said Air-To-Ground terrestrial base stations;

controlling data flow, comprising:

determining, in response to call traffic comprising communications from a plurality of wireless subscriber devices located in said aircraft, a call traffic load presented by the plurality of wireless subscriber devices for transmission to the Air-To-Ground terrestrial base stations and Air-To-Ground Radio Frequency communications link service quality to said Air-To-Ground terrestrial base stations,

dividing, in response to said call traffic load and Air-To-Ground Radio Frequency communications link service quality, call traffic into multiple segments for distribution among said plurality of radio frequency antennas; and

simultaneously generating, in said aircraft, radio frequency communication signals for each of said multiple segments for application to said plurality of independently operable antennas, comprising:

generating said radio frequency communication signals at a first polarization,

generating said radio frequency communication signals at a second polarization, which is substantially orthogonal to said first polarization,

applying a first set of said radio frequency communication signals at said first polarization to a first radio frequency antenna, and a second set of said radio frequency communication signals at said second polarization to said first radio frequency antenna, and

applying a third set of said radio frequency communication signals at said first polarization to a second radio frequency antenna, and a fourth set of said radio frequency communication signals at said second polarization to said second radio frequency antenna.

17. The method for managing radio frequency communications of claim 16 wherein said plurality of radio frequency antennas comprises:

at least two dual polarization radio frequency antennas mounted on the belly of the aircraft in a physically spaced apart relationship.

18. The method for managing radio frequency communications of claim 16 wherein said step of activating a plurality of radio frequency antennas comprises:

activating a first radio frequency antenna mounted on the belly of the aircraft forward of a midline of the aircraft, which comprises the point halfway between the nose and tail of the aircraft; and

activating a second radio frequency antenna mounted on the belly of the aircraft aft of the midline of the aircraft.

19. The method for managing radio frequency communications of claim 18 wherein said first radio frequency antenna and said second radio frequency antenna are dual polarization antennas.

20. The method for managing radio frequency communications of claim 16 wherein said step of generating comprises:

establishing multiple Air-To-Ground Radio Frequency communications links with selected ones of said plurality of Air-To-Ground terrestrial base stations.

21. The method for managing radio frequency communications of claim 16 wherein said step of generating comprises:

defining communications link characteristics of a selected Air-To-Ground Radio Frequency communications link to communicate with a selected Air-To-Ground terrestrial base station.

22. The method for managing radio frequency communications of claim 21 wherein said step of generating further comprises:

establishing multiple Air-To-Ground Radio Frequency communications links with selected ones of said plurality of Air-To-Ground terrestrial base stations.

23. The method for managing radio frequency communications of claim 21 wherein said step of establishing selects a plurality of communications link characteristics from the set of communications link characteristics that include: Radio Frequency, Radio Frequency signal polarization, Air-To-Ground terrestrial base station, multi-dimensional sector of an Air-To-Ground terrestrial base station having multiple multi-dimensional sectors, and Air-To-Ground Radio Frequency communications link handoff candidates.

24. A method for managing radio frequency communications between a plurality of wireless subscriber devices located in an aircraft and a plurality of Air-To-Ground terrestrial base stations, which are located on the ground, comprising:

activating a plurality of independently operable radio frequency antennas mounted on the exterior surface of said aircraft;

generating, in said aircraft, radio frequency communication signals for application to said plurality of independently operable radio frequency antennas to simultaneously maintain multiple Air-To-Ground Radio Frequency communications links with a plurality of said Air-To-Ground terrestrial base stations independent of a handoff process, to concurrently exchange call traffic between said plurality of wireless subscriber devices and a plurality of said Air-To-Ground terrestrial base stations;

controlling data flow, comprising:

determining, in response to call traffic comprising communications from a plurality of wireless subscriber devices located in said aircraft, the call traffic load and Air-To-Ground Radio Frequency communications link service quality,

dividing, in response to said call traffic load and Air-To-Ground Radio Frequency communications link service quality, call traffic into multiple segments for distribution among said plurality of radio frequency antennas; and

simultaneously generating, in said aircraft, radio frequency communication signals for each of said multiple segments for application to said plurality of independently operable antennas, comprising:

generating said radio frequency communication signals at a first polarization,

generating said radio frequency communication signals at a second polarization, which is substantially orthogonal to said first polarization,

applying a first set of said radio frequency communication signals at a first polarization to a first radio frequency antenna, and a second set of said radio frequency communication signals at said first polarization to a second radio frequency antenna; and

applying a third set of said radio frequency communication signals at said second polarization to said first radio frequency antenna, and a fourth set of said radio frequency communication signals at said second polarization to said second radio frequency antenna.

25. The method for managing radio frequency communications of claim 24 wherein said plurality of radio frequency antennas comprises:

at least two dual polarization radio frequency antennas mounted on the belly of the aircraft in a physically spaced apart relationship.

26. The method for managing radio frequency communications of claim 24 wherein said first radio frequency antenna and said second radio frequency antenna are dual polarization antennas.

27. The method for managing radio frequency communications of claim 24 wherein said step of generating comprises:

establishing multiple Air-To-Ground Radio Frequency communications links with selected ones of said plurality of Air-To-Ground terrestrial base stations.

28. The method for managing radio frequency communications of claim 24 wherein said step of generating comprises:

defining communications link characteristics of a selected Air-To-Ground Radio Frequency communications link to communicate with a selected Air-To-Ground terrestrial base station.

29. The method for managing radio frequency communications of claim 28 wherein said step of generating further comprises:

establishing multiple Air-To-Ground Radio Frequency communications links with selected ones of said plurality of Air-To-Ground terrestrial base stations.

30. The method for managing radio frequency communications of claim 28 wherein said step of establishing selects a plurality of communications link characteristics from the set of communications link characteristics that include: Radio Frequency, Radio Frequency signal polarization, Air-To-Ground terrestrial base station, multi-dimensional sector of an Air-To-Ground terrestrial base station having multiple multi-dimensional sectors, and Air-To-Ground Radio Frequency communications link to handoff candidates.

Assignments (19)
PATENT SECURITY AGREEMENT Recorded Dec 3, 2024
From: GOGO BUSINESS AVIATION LLC
To: HPS INVESTMENT PARTNERS, LLC, AS COLLATERAL AGENT
Reel/Frame 069479/0335 →
RELEASE OF SECURITY INTEREST IN INTELLECTUAL PROPERTY COLLATERAL Recorded May 6, 2021
From: U.S. BANK NATIONAL ASSOCIATION
To: GOGO LLC; GOGO BUSINESS AVIATION LLC
Reel/Frame 056153/0033 →
RELEASE OF SECURITY INTEREST Recorded May 4, 2021
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: GOGO LLC
Reel/Frame 057252/0208 →
SECURITY INTEREST Recorded Apr 30, 2021
From: GOGO BUSINESS AVIATION LLC
To: MORGAN STANLEY SENIOR FUNDING, INC., AS COLLATERAL AGENT
Reel/Frame 056106/0471 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2020
From: GOGO LLC
To: GOGO BUSINESS AVIATION LLC
Reel/Frame 053782/0669 →
SECURITY INTEREST Recorded Aug 27, 2019
From: GOGO LLC
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 050193/0797 →
SECURITY INTEREST Recorded May 2, 2019
From: GOGO LLC
To: U.S. BANK NATIONAL ASSOCIATION
Reel/Frame 049074/0225 →
RELEASE OF SECURITY INTEREST IN PATENTS AT REEL/FRAME NO. 039381/0484 Recorded Apr 26, 2019
From: U.S. BANK NATIONAL ASSOCIATION
To: GOGO LLC
Reel/Frame 049013/0360 →
PATENT SECURITY AGREEMENT Recorded Jul 18, 2016
From: GOGO LLC
To: U.S. BANK NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 039381/0484 →
SECURITY AGREEMENT Recorded Jun 22, 2012
From: GOGO LLC
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 028430/0658 →
CHANGE OF NAME Recorded Jun 21, 2011
From: AIRCELL LLC
To: GOGO LLC
Reel/Frame 026474/0520 →
PATENT SECURITY RELEASE AGREEMENT (JUNE 13, 2008) Recorded Jan 8, 2010
From: AC ACQUISITION I LLC
To: AC HOLDCO INC. (SUCCESSOR IN INTEREST TO AC HOLDCO LLC); AIRCELL LLC; AIRCELL BUSINESS AVIATION SERVICES LLC; AIRCELL INTERNATIONAL, INC.; AC BIDCO LLC
Reel/Frame 023750/0847 →
PATENT SECURITY RELEASE AGREEMENT (JANUARY 23, 2009) Recorded Jan 8, 2010
From: AC ACQUISITION I LLC
To: AC HOLDCO INC. (SUCCESSOR IN INTEREST TO AC HOLDCO LLC); AIRCELL LLC; AIRCELL INTERNATIONAL, INC.; AIRCELL AVIATION, INC.; SPECTRALABS TECHNOLOGIES LLC; AC BIDCO LLC
Reel/Frame 023750/0838 →
RELEASE OF SECURITY INTEREST Recorded Oct 30, 2009
From: THE BANK OF NOVA SCOTIA
To: AIRCELL BUSINESS AVIATION SERVICES LLC; AIRCELL LLC
Reel/Frame 023449/0542 →
SECURITY AGREEMENT Recorded Nov 7, 2008
From: AC HOLDCO LLC; AIRCELL LLC; AIRCELL BUSINESS AVIATION SERVICES LLC; AIRCELL INTERNATIONAL INC.; AC BIDCO LLC
To: AC ACQUISITION I LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 021805/0051 →
SECURITY AGREEMENT Recorded Jun 19, 2008
From: AIRCELL BUSINESS AVIATION SERVICES LLC; AIRCELL LLC
To: THE BANK OF NOVA SCOTIA, AS ADMINISTRATIVE AGENT
Reel/Frame 021109/0905 →
SECURITY AGREEMENT Recorded Mar 28, 2008
From: AC HOLDCO LLC; AIRCELL LLC; AIRCELL INTERNATIONAL, INC.; AIRCELL AVIATION, INC.; SPECTRALABS TECHNOLOGIES LLC; AC BIDCO LLC
To: AC ACQUISITION I LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 020710/0958 →
DOCUMENT ID NO. 700333512 Recorded Jul 13, 2007
From: AIRCELL, INC.
To: AIRCELL LLC
Reel/Frame 019668/0363 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2006
From: CHARI, ANAD K.; SAROKA, HAROLD G.; JOYCE, TIM; WALSH, PATRICK J.; LIU, YONG; MCKENNA, DANIEL B.
To: AIRCELL, INC.
Reel/Frame 018657/0043 →
Continuity (1)
Related Publication 20080102813A1 · May 1, 2008