IP Library Patent Application 18424950
Patent Application
App. No. 18/424,950

PRIORITIZATION IN AERONAUTICAL SATELLITE NETWORKS

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
18/424,950
Abstract

Systems and methods implementing prioritization of network resources in an aeronautical satellite network system, which determines network utilization of a beam of the aeronautical satellite system by a plurality of aircraft using network capacity of the beam, where network demand in the beam indicated by the network utilization is greater than capacity of the beam, share network bandwidth of the beam to the plurality of aircraft based on a service priority factor, where the service priority factor may depend on altitude of the plurality of aircraft in the beam.

Claims (46)

1 . A method for prioritization in an aeronautical satellite network system, the method comprising:

determining network utilization of a beam of the aeronautical satellite network system by a plurality of aircraft using network capacity of the beam;

determining whether a demand in the beam indicated by network utilization is greater than the capacity of the beam;

upon determining the network demand in the beam indicated by the network utilization is greater than capacity of the beam, sharing network bandwidth of the beam to a first aircraft of the plurality of aircraft based on a service priority factor where the service priority factor depends on an altitude of the first aircraft.

2 . The method according to claim 1 , wherein the service priority factor depends on altitude of the plurality of aircraft in the beam.

3 . The method according to claim 1 , further comprising:

receiving a report of a number of the plurality of aircraft above and a number of the plurality of aircraft below an altitude threshold on a per beam basis;

receiving a capacity utilization for the beam; and

using the number of the plurality of aircraft above and the number of the plurality of aircraft below the altitude threshold and the capacity utilization for the beam to determine the service priority factor.

4 . The method according to claim 3 , wherein the altitude threshold includes a hysteresis.

5 . The method according to claim 3 , wherein the service priority factor is a step function based on the number of the plurality of aircraft above and the number of the plurality of aircraft below the altitude threshold.

6 . The method according to claim 1 , wherein the service priority factor is a linear function based on a capacity utilization of the beam.

7 . The method according to claim 1 further comprising:

upon determining network demand in the beam is less than capacity serving an entire bandwidth to each aircraft of the plurality of aircraft.

8 . An aeronautical satellite network system comprising:

a terrestrial gateway configured to communicate with a satellite;

a mobility network access point configured to provide network resources to a plurality of aircraft through the terrestrial gateway;

an aggregator configured to receive capacity utilization of network communication to the plurality of aircraft within a beam of the satellite and determine a service priority factor that depends on an altitude of a first aircraft of the plurality of aircraft in the beam,

wherein the mobility network access point is configured to share network bandwidth of the beam to the first aircraft of the plurality of aircraft based on the service priority factor where the service priority factor depends on the altitude of the first aircraft.

9 . The aeronautical satellite network system of claim 8 , wherein the service priority factor depends on altitude of the plurality of aircraft in the beam.

10 . The aeronautical satellite network system of claim 8 , wherein the aggregator is configured to receive a report of a number of the plurality of aircraft above and a number of the plurality of aircraft below an altitude threshold on a per beam basis and uses the number of the plurality of aircraft above and the number of the plurality of aircraft below the altitude threshold and the capacity utilization for the beam to determine the service priority factor.

11 . The aeronautical satellite network system of claim 10 , wherein the aggregator is further configured to use the capacity utilization for the beam to determine the service priority factor.

12 . The aeronautical satellite network system of claim 10 , further comprising:

a plurality of network Internet Protocol (IP) processors;

wherein the aggregator is configured to:

receive capacity utilization reports of network utilization by the plurality of aircraft,

create an aggregate report of network utilization,

use the aggregate report to determine the service priority factor, and

send the service priority factor to the network IP processors.

13 . The aeronautical satellite network system of claim 12 , wherein the plurality of network IP processors use the service priority factor to limit bandwidth to individual aircraft serviced by each of the plurality of network IP processors.

14 . The aeronautical satellite network system of claim 10 , wherein the altitude threshold includes a hysteresis.

15 . The aeronautical satellite network system of claim 10 wherein the service priority factor is a step function based on the number of the plurality of aircraft above and the number of the plurality of aircraft below the altitude threshold.

16 . The aeronautical satellite network system of claim 10 , wherein the service priority factor is a linear function based on a capacity utilization of the beam.

17 . The aeronautical satellite network system of claim 10 wherein the mobility network access point is configured to determine network demand in the beam is less than the capacity and serves an entire bandwidth to each aircraft of the plurality of aircraft.

18 . An aeronautical satellite network system comprising:

a terrestrial gateway configured to communicate with a satellite;

a mobility network access point configured to provide network resources to a plurality of aircraft through the terrestrial gateway;

a plurality of network IP processors in the mobility network access point;

an aggregator configured to:

receive network capacity utilization reports of network utilization by the plurality of aircraft,

receive a report of a number of the plurality of aircraft above and a number of the plurality of aircraft below an altitude threshold on a per beam basis,

use the number of the plurality of aircraft above and the number of the plurality of aircraft below the altitude threshold and the capacity utilization for the beam to determine a service priority factor, and

send the service priority factor to the network IP processors;

wherein the plurality of network IP processors are configured to use the service priority factor to limit bandwidth to individual aircraft of the plurality of aircraft serviced by each of the plurality of network IP processors.

19 . The aeronautical satellite network system of claim 18 wherein the service priority factor is a step function based on the number of the plurality of aircraft above and the number of the plurality of aircraft below the altitude threshold.

20 . The aeronautical satellite network system of claim 18 , where the service priority factor is a linear function based on a capacity utilization of the beam.

Assignments (2)
SECURITY INTEREST Recorded May 14, 2024
From: HUGHES NETWORK SYSTEMS, LLC
To: U.S. BANK NATIONAL ASSOCIATION
Reel/Frame 067407/0535 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2024
From: MONTGOMERY, GUY BRYAN; KORADA, SURESH KUMAR; SRIRAMAN, RITHAMBARA
To: HUGHES NETWORK SYSTEMS, LLC
Reel/Frame 066343/0501 →