IP Library Granted Patent US 8,792,880
Granted Patent B2
US 8,792,880 · App. 13/601,413 · Granted Jul 29, 2014

Terrestrial based high speed data communications mesh network

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Quick Facts
Patent No.
US 8,792,880
App. No.
13/601,413
Granted
Jul 29, 2014
Kind
B2
Abstract

A network for providing high speed data communications may include multiple terrestrial transmission stations that are located within overlapping communications range and a mobile receiver station. The terrestrial transmission stations provide a continuous and uninterrupted high speed data communications link with the mobile receiver station employing a wireless radio access network protocol.

Claims (25)

1. A network comprising:

at least a first node comprising a surface node configured to provide a high speed data communications link for a receiver station onboard an in-flight aircraft responsive to the receiver station being within a coverage area defined by the first node; and

at least a second node configured to provide the high speed data communications link to the receiver station onboard the in-flight aircraft responsive to the in-flight aircraft transiting between the coverage area defined by the first node and a coverage area defined by the second node,

wherein the high speed data communications link is maintained continuous and uninterrupted in time while the in-flight aircraft transitions between coverage areas defined by the first node and the second node, and

wherein the receiver station comprises passenger equipment and the high speed data communications link is maintained between the passenger equipment and a respective one of the first node and the second node without an in-flight storage server between the passenger equipment and the first node or the second node.

2. The network of claim 1 , wherein the high speed data communications link is provided continuous and uninterrupted in time with the receiver station employing Orthogonal Frequency Division Multiplexing (OFDM).

3. The network of claim 2 , wherein the receiver station employs communication bands in about a 2 GHz to about a 6 GHz range utilizing OFDM.

4. The network of claim 1 , wherein the high speed data communications link is provided continuous and uninterrupted in time with the receiver station according to Long Term Evolution (LTE) terrestrial radio access network protocols.

5. The network of claim 1 , wherein the high speed data communications link is provided continuous and uninterrupted in time with the receiver station according to IEEE 802.16 Air Interface Standard.

6. The network of claim 1 , wherein the network is a mesh network and wherein the surface node comprises a land based node or a sea based node.

7. The network of claim 1 , wherein the second node comprises an in-flight node that is in communication with the receiver station via at least one additional node acting as a repeater node.

8. The network of claim 1 , wherein the second node comprises an in-flight node on a different aircraft than the receiver station.

9. An airborne communication node configured to receive high speed data communications on an in-flight aircraft, comprising:

a receiver station comprising passenger equipment disposed on the in-flight aircraft, the receiver station configured to communicate with:

at least a first node comprising a surface node configured to provide a high speed data communications link for the receiver station responsive to the receiver station being within a coverage area defined by the first node; and

at least a second node configured to provide the high speed data communications link to the receiver station onboard the in-flight aircraft responsive to the in-flight aircraft transiting between the coverage area defined by the first node and a coverage area defined by the second node,

wherein the high speed data communications link is maintained continuous and uninterrupted in time while the in-flight aircraft transitions between coverage areas defined by the first node and the second node, and

wherein the receiver station comprises passenger equipment and the high speed data communications link is maintained between the passenger equipment and a respective one of the first node and the second node without an in-flight storage server between the passenger equipment and the first node or the second node.

10. The airborne communication node of claim 9 , wherein the high speed data communications link is provided continuous and uninterrupted in time with the receiver station employing Orthogonal Frequency Division Multiplexing (OFDM).

11. The airborne communication node of claim 10 , wherein the receiver station employs communication bands in about a 2 GHz to about a 6 GHz range utilizing OFDM.

12. The airborne communication node of claim 9 , wherein the high speed data communications link is provided continuous and uninterrupted in time with the receiver station according to Long Term Evolution (LTE) terrestrial radio access network protocols.

13. The airborne communication node of claim 9 , wherein the high speed data communications link is provided continuous and uninterrupted in time with the receiver station according to IEEE 802.16 Air Interface Standard.

14. The airborne communication node of claim 9 , wherein the network is a mesh network and wherein the surface node comprises a land based node or a sea based node.

15. The airborne communication node of claim 9 , wherein the second node comprises an in-flight node that is in communication with the receiver station via at least one additional node acting as a repeater node.

16. The airborne communication node of claim 9 , wherein the second node comprises an in-flight node on a different aircraft than the receiver station.

Assignments (2)
SECURITY INTEREST Recorded Feb 4, 2019
From: SMARTSKY NETWORKS, LLC
To: WILMINGTON SAVINGS FUND SOCIETY, FSB, AS AGENT
Reel/Frame 048232/0545 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2012
From: ALCORN, DONALD
To: SMARTSKY NETWORKS, LLC
Reel/Frame 029068/0389 →