IP Library Granted Patent US 12,609,761
Granted Patent B2
US 12,609,761 · App. 18/358,751 · Granted Apr 21, 2026

Systems and methods for support of a 5G satellite radio access technology

Inventor: Stephen William Edge (Escondido, CA)
Assignee: QUALCOMM Incorporated
H04B7/18513H04W4/029H04W4/90H04W60/00
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Quick Facts
Patent No.
US 12,609,761
App. No.
18/358,751
Granted
Apr 21, 2026
Kind
B2
Abstract

Access, mobility management and regulatory services are supported for satellite access to a Fifth Generation (5G) core network. A coverage area, e.g., country, region, multiple countries, and international areas, are divided into fixed virtual cells having well defined geographic boundaries and fixed tracking areas. Information for the virtual cells and/or tracking areas and associated with one or more public land mobile networks (PLMNs) may be provided to a user equipment (UE). The UE may obtain its position, e.g., using a satellite positioning system, and determine the serving virtual cell or tracking area in which it is located. The UE may perform registration with a serving core network in a serving PLMN associated with the serving virtual cell or tracking area. Regulatory services, such as emergency (EM) calls, lawful interception (LI), wireless emergency alerts (WEA) may be provided based on the serving virtual cell or tracking area.

Claims (101)

1 . A method for supporting satellite wireless access for a user equipment (UE) from a first satellite, the method comprising:

obtaining information that defines each of one or more virtual cells or virtual tracking areas or both as a respective fixed geographic area located within wireless coverage of the first satellite and associated with one or more public land mobile networks (PLMNs), at least one of the virtual cells or the virtual tracking areas being outside radio coverage of any terrestrial base station, by receiving broadcast data from a first satellite, wherein the broadcast data includes the information;

obtaining a position of the UE;

determining, based on the obtained position of the UE and the included information, a serving virtual cell or a virtual tracking area in which the UE is located; and

performing, via the first satellite and a serving satellite Radio Access Network (RAN) node (SRN) communicatively coupled with the first satellite, a registration of the UE with at least one of the one or more PLMNs, based at least in part on the determined serving virtual cell or virtual tracking area.

2 . The method of claim 1 , wherein obtaining the position of the UE and determining the serving virtual cell or the virtual tracking area in which the UE is located comprises:

establishing a signaling connection with an SRN associated with a PLMN that is accessible from the first satellite; and

determining, with the SRN, the position of the UE using measurements received from the UE and the first satellite; and

receiving, from the SRN, the serving virtual cell or the virtual tracking area in which the UE is located.

3 . The method of claim 1 , wherein:

the included information comprises at least one of:

locations of grid points in an array of grid points, wherein the array of grid points comprises additional grid points assigned to virtual cells on each side of an international border so that a closest grid point to any location is in a same country as that location;

virtual cell identifiers associated with the grid points;

tracking area identifiers associated with one or more of the virtual tracking areas, the virtual cell identifiers or the grid points; or

PLMN identifiers associated with one or more of the grid points, the virtual cell identifiers or the tracking area identifiers; and

determining the serving virtual cell or virtual tracking area in which the UE is located comprises determining a grid point that is closest to the position of the UE, wherein the serving virtual cell or virtual tracking area in which the UE is located is associated with a grid point that is closest to the position of the UE.

4 . The method of claim 3 , wherein determining the serving virtual cell or the virtual tracking area in which the UE is located further comprises:

determining a country in which the UE is located; and

determining a grid point that is in the country in which the UE is located and that is closest to the position of the UE, wherein the serving virtual cell or the virtual tracking area in which the UE is located is associated with a grid point that is closest to the position of the UE and that is in the country in which the UE is located.

5 . The method of claim 1 , further comprising:

receiving information for the first satellite, the information for the first satellite comprising identifiers for one or more SRNs, locations of ground stations for the one or more SRNs, wherein the ground stations are in wireless coverage of the first satellite, and a list of virtual tracking areas and corresponding PLMNs that are in the wireless coverage of the first satellite, wherein the PLMNs are accessible from the one or more SRNs; and

obtaining a serving SRN by determining the serving SRN as an SRN from the one or more SRNs with a ground station that is closest to the position of the UE.

6 . The method of claim 5 , further comprising:

providing periodic measurements of visible satellites to the serving SRN;

receiving instructions from the serving SRN for handover from the first satellite to a second satellite; and

performing the handover from the first satellite to the second satellite.

7 . The method of claim 1 , further comprising:

entering an idle state; and

camping on a second satellite for which the UE has signal reception and that indicates coverage of the virtual tracking area in which the UE is located.

8 . The method of claim 2 , wherein the first satellite provides signal reception and access to a preferred PLMN and the SRN is associated with the preferred PLMN.

9 . The method of claim 1 , wherein the at least one of the one or more PLMNs is associated with the serving virtual cell.

10 . The method of claim 9 , further comprising:

initiating an emergency (EM) call to a public safety answering point (PSAP) associated with the serving virtual cell comprising:

obtaining an emergency session through the first satellite via a first entity in the serving core network in the serving PLMN;

performing an emergency registration with a second entity in the serving PLMN; and

sending an emergency call to the second entity in the serving PLMN, wherein the emergency call includes an identifier for the serving virtual cell, wherein the second entity routes the emergency call to the PSAP associated with the identifier for the serving virtual cell.

11 . The method of claim 9 , wherein Lawful Interception (LI) associated with the serving virtual cell is supported by an entity in the serving core network in the serving PLMN by providing information for the UE including a location of the serving virtual cell to a law enforcement agency.

12 . The method of claim 9 , further comprising:

supporting Wireless Emergency Alerting (WEA) associated with the serving virtual cell comprising receiving from the first satellite and displaying to a user of the UE a WEA message associated with the serving virtual cell.

13 . The method of claim 12 , further comprising:

receiving a broadcast from the first satellite for each of one or more virtual cells within a wireless coverage area of the first satellite, wherein the broadcast associated with the serving virtual cell contains one or more WEA messages assigned to the serving virtual cell.

14 . The method of claim 12 , further comprising:

receiving a broadcast from the first satellite that contains all WEA messages for virtual cells within a wireless coverage area of the first satellite, wherein each WEA message includes one or more virtual cell identifiers for which it is applicable or each WEA message includes an associated reference identifier; and

receiving a second broadcast from the first satellite that contains one or more reference identifiers associated with the serving virtual cell.

15 . A user equipment (UE) configured to support satellite wireless access, comprising:

a satellite transceiver configured to communicate with satellites;

at least one memory; and

at least one processor coupled to the satellite transceiver and the at least one memory, the at least one processor configured to:

obtain information that defines each of one or more virtual cells or virtual tracking areas or both as a respective fixed geographic area located within wireless coverage of the first satellite and associated with one or more public land mobile networks (PLMNs), at least one of the virtual cells or the virtual tracking areas being outside radio coverage of any terrestrial base station, by receiving broadcast data from a first satellite, wherein the broadcast data includes the information;

obtain a position of the UE;

determine, based on the obtained position of the UE and the included information, a serving virtual cell or a virtual tracking area in which the UE is located; and

perform, via the first satellite and a serving satellite Radio Access Network (RAN) node (SRN) communicatively coupled with the first satellite, a registration of the UE with at least one of the one or more PLMNs, based at least in part on the determined serving virtual cell or virtual tracking area.

16 . The UE of claim 15 , wherein the at least one processor is further configured to obtain the position of the UE and determine the serving virtual cell or the virtual tracking area in which the UE by:

establishing a signaling connection with an SRN associated with a PLMN that is accessible from the first satellite; and

determining, with the SRN, the position of the UE using measurements received from the UE and the first satellite; and

receiving, from the SRN, the serving virtual cell or the virtual tracking area in which the UE is located.

17 . The UE of claim 15 , wherein:

the included information further comprises at least one of:

locations of grid points in an array of grid points, wherein the array of grid points comprises additional grid points assigned to virtual cells on each side of an international border so that a closest grid point to any location is in a same country as that location;

virtual cell identifiers associated with the grid points;

tracking area identifiers associated with one or more of the virtual tracking areas, the virtual cell identifiers or the grid points; or

PLMN identifiers associated with one or more of the grid points, the virtual cell identifiers or the tracking area identifiers; and

the at least one processor is further configured to determine the serving virtual cell or virtual tracking area in which the UE is located by determining a grid point that is closest to the position of the UE, wherein the serving virtual cell or virtual tracking area in which the UE is located is associated with a grid point that is closest to the position of the UE.

18 . The UE of claim 15 , wherein the at least one processor is further configured to determine the serving virtual cell or virtual tracking area in which the UE is located by:

determining a country in which the UE is located; and

determining a grid point that is in the country in which the UE is located and that is closest to the position of the UE, wherein the serving virtual cell or the virtual tracking area in which the UE is located is associated with a grid point that is closest to the position of the UE and that is in the country in which the UE is located.

19 . The UE of claim 15 , wherein the at least one processor is further configured to:

receive information for the first satellite, the information for the first satellite comprising identifiers for one or more SRNs, locations of ground stations for the one or more SRNs, wherein the ground stations are in wireless coverage of the first satellite, and a list of virtual tracking areas and corresponding PLMNs that are in the wireless coverage of the first satellite, wherein the PLMNs are accessible from the one or more SRNs; and

obtain a serving SRN by determining the serving SRN as an SRN from the one or more SRNs with a ground station that is closest to the position of the UE.

20 . The UE of claim 19 , wherein the at least one processor is further configured to:

provide periodic measurements of visible satellites to the serving SRN;

receive instructions from the serving SRN for handover from the first satellite to a second satellite; and

perform the handover from the first satellite to the second satellite.

21 . The UE of claim 15 , wherein the at least one processor is further configured to:

enter an idle state; and

camp on a second satellite for which the UE has signal reception and that indicates coverage of the virtual tracking area in which the UE is located.

22 . The UE of claim 16 , wherein the first satellite provides signal reception and access to a preferred PLMN and the SRN is associated with the preferred PLMN.

23 . The UE of claim 15 , wherein the at least one of the one or more PLMNs is associated with the serving virtual cell.

24 . The UE of claim 23 , wherein the at least one processor is further configured to:

initiate an emergency (EM) call to a public safety answering point (PSAP) associated with the serving virtual cell comprising:

obtain an emergency session through the first satellite via a first entity in the serving core network in the serving PLMN;

perform an emergency registration with a second entity in the serving PLMN; and

send an emergency call to the second entity in the serving PLMN, wherein the emergency call includes an identifier for the serving virtual cell, wherein the second entity routes the emergency call to the PSAP associated with the identifier for the serving virtual cell.

25 . The UE of claim 23 , wherein Lawful Interception (LI) associated with the serving virtual cell is supported by an entity in the serving core network in the serving PLMN by providing information for the UE including a location of the serving virtual cell to a law enforcement agency.

26 . The UE of claim 23 , wherein the at least one processor is further configured to:

support Wireless Emergency Alerting (WEA) associated with the serving virtual cell comprising receiving from the first satellite and displaying to a user of the UE a WEA message associated with the serving virtual cell.

27 . The UE of claim 26 , wherein the at least one processor is further configured to:

receive a broadcast from the first satellite for each of one or more virtual cells within a wireless coverage area of the first satellite, wherein the broadcast associated with the serving virtual cell contains one or more WEA messages assigned to the serving virtual cell.

28 . The UE of claim 26 , wherein the at least one processor is further configured to:

receive a broadcast from the first satellite that contains all WEA messages for virtual cells within a wireless coverage area of the first satellite, wherein each WEA message includes one or more virtual cell identifiers for which it is applicable or each WEA message includes an associated reference identifier; and

receive a second broadcast from the first satellite that contains one or more reference identifiers associated with the serving virtual cell.

29 . A user equipment (UE) configured to support satellite wireless access, comprising:

means for obtaining information that defines each of one or more virtual cells or virtual tracking areas or both as a respective fixed geographic area located within wireless coverage of the first satellite and associated with one or more public land mobile networks (PLMNs), at least one of the virtual cells or the virtual tracking areas being outside radio coverage of any terrestrial base station, by receiving broadcast data from a first satellite, wherein the broadcast data includes the information;

means for obtaining a position of the UE;

means for determining, based on the obtained position of the UE and the included information, a serving virtual cell or a virtual tracking area in which the UE is located; and

means for performing, via the first satellite and a serving satellite Radio Access Network (RAN) node (SRN) communicatively coupled with the first satellite, a registration of the UE with at least one of the one or more PLMNs, based at least in part on the determined serving virtual cell or virtual tracking area.

30 . A non-transitory storage medium including program code stored thereon, the program code being operable to configure at least one processor in a user equipment (UE) to support satellite wireless access and comprising:

program code to obtain information that defines each of one or more virtual cells or virtual tracking areas or both as a respective fixed geographic area located within wireless coverage of the first satellite and associated with one or more public land mobile networks (PLMNs), at least one of the virtual cells or the virtual tracking areas being outside radio coverage of any terrestrial base station, by receiving broadcast data from a first satellite, wherein the broadcast data includes the information;

program code to obtain a position of the UE;

program code to determine, based on the obtained position of the UE and the included information, a serving virtual cell or a virtual tracking area in which the UE is; and

program code to perform, via the first satellite and a serving satellite Radio Access Network (RAN) node (SRN) communicatively coupled with the first satellite, a registration of the UE with at least one of the one or more PLMNs, based at least in part on the determined serving virtual cell or virtual tracking area.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2023
From: EDGE, STEPHEN WILLIAM
To: QUALCOMM INCORPORATED
Reel/Frame 064390/0561 →
Continuity (3)
Continuation 17090718 · Nov 5, 2020
Provisional Application 62932486 · Nov 7, 2019
Related Publication 20230370157A1 · Nov 16, 2023
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