IP Library › Granted Patent US 11,832,140
Granted Patent B2
US 11,832,140 · App. 17/239,432 · Granted Nov 28, 2023

Inter-donor cell management in wireless communication network

Inventors: Naeem Akl (Somerville, NJ); Karl Georg Hampel (Hoboken, NJ); Navid Abedini (Basking Ridge, NJ); Jianghong Luo (Skillman, NJ); Luca Blessent (Whitehouse Station, NJ); Junyi Li (Franklin Park, NJ); Tao Luo (San Diego, CA)
Assignee: QUALCOMM Incorporated
H04W36/08H04W36/0055H04W48/16H04W92/20
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Quick Facts
Patent No.
US 11,832,140
App. No.
17/239,432
Granted
Nov 28, 2023
Kind
B2
Abstract

Aspects relate to technologies and techniques for migrating a radio access network (RAN) node associated with a first donor node in a communications network. The first donor node may receive, via a first communications interface, such as an F1-C or resource control (RRC) interface, cell configuration data associated with one or more cells of the RAN node activated by the first donor node. The first donor node may process the cell configuration data and transit the cell configuration data, using a second communications interface, such as an Xn or X2 interface, to a second donor node for use in migrating the RAN node from the first donor node to the second donor node.

Claims (54)

1. A method of migrating a radio access network (RAN) node associated with a first integrated access backhaul (IAB) donor node in an IAB network, comprising:

receiving, in the first IAB donor node via a first communications interface, cell configuration data associated with the RAN node, the cell configuration data comprising data associated with one or more cells of the RAN node activated by the first IAB donor node, wherein the RAN node is configured with at least one IAB mobile termination functionality (IAB-MT) and at least one IAB distributed unit functionality (IAB-DU) and wherein the cell configuration data includes one or more of a new radio (NR) Cell Global Identity (NCGI);

processing the cell configuration data for migrating the one or more cells to a second IAB donor node; and

transmitting the processed cell configuration data, via a second communications interface, to the second IAB donor node for use in migrating the RAN node from the first IAB donor node to the second IAB donor node.

2. The method of claim 1 , wherein

the first communications interface is one of a F1 control (F1-C) interface or a radio resource control (RRC) interface; and

the second communications interface is one of an Xn interface or an X2 interface.

3. The method of claim 1 , wherein the first IAB donor node comprises a source IAB donor node.

4. The method of claim 1 , wherein the one or more of the NCGI comprises an identifier of the first IAB donor node, physical cell identifier (PCI) data, an activation status, or cell information.

5. The method of claim 4 , wherein the cell information comprises one or more of a Public Land Mobile Network (PLMN) identifier (ID), an area code, a frequency or bandwidth, a cell direction, a cell size, a cell mode, a time-division duplex (TDD) configuration, a measurement timing configuration, cell access information, or connectivity support information.

6. The method of claim 1 , further comprising:

obtaining a second cell configuration data associated with the RAN node comprising data associated with one or more cells of the RAN node activated by the first IAB donor node; and

transmitting the second cell configuration data via the second communications interface to the second IAB donor node for use in migrating the RAN node from the first IAB donor node to the second IAB donor node.

7. The method of claim 6 , wherein the obtaining the second cell configuration data associated with the RAN node comprises deriving the second cell information from the first cell configuration via mapping.

8. The method of claim 6 , wherein the obtaining the second cell configuration data associated with the RAN node comprises receiving the second cell configuration data from the RAN node via the first communications interface.

9. The method of claim 6 , wherein the obtaining the second cell configuration data associated with the RAN node comprises receiving the second cell configuration data from the second IAB donor node via the second communications interface.

10. The method of claim 9 , wherein the second cell configuration comprises mapping data for mapping between the first cell configuration data and the second cell configuration data.

11. The method of claim 1 , wherein the transmitting the processed cell configuration data comprises transmitting the processed cell configuration data in one of a handover preparation message, a secondary node addition preparation message, a secondary node modification message or a secondary node change message.

12. A first integrated access backhaul (IAB) donor node within an IAB network, comprising:

a first communications interface;

a second communications interface;

a memory; and

a processor communicatively coupled to the transceiver and the memory, wherein the processor is configured to:

receive, in the first IAB donor node via a first communications interface, cell configuration data associated with the RAN node, the cell configuration data comprising data associated with one or more cells of the RAN node activated by the first IAB donor node, wherein the RAN node is configured with at least one IAB mobile termination functionality (IAB-MT) and at least one IAB distributed unit functionality (IAB-DU) and wherein the cell configuration data includes one or more of a new radio (NR) Cell Global Identity (NCGI);

process the cell configuration data for migrating the one or more cells to a second IAB donor node; and

transmit the processed cell configuration data, via a second communications interface, to the second IAB donor node for use in migrating the RAN node from the first IAB donor node to the second IAB donor node.

13. The first IAB donor node of claim 12 , wherein

the first communications interface is one of a F1 control (F1-C) interface or a radio resource control (RRC) interface; and

the second communications interface is one of an Xn interface or an X2 interface.

14. The first IAB donor node of claim 12 , wherein the first IAB donor node comprises a source IAB donor node.

15. The first IAB donor node of claim 12 , wherein the one or more of the NCGI comprises an identifier of the first IAB donor node, physical cell identifier (PCI) data, an activation status, or cell information.

16. The first IAB donor node of claim 15 , wherein the cell information comprises one or more of a Public Land Mobile Network (PLMN) identifier (ID), an area code, a frequency or bandwidth, a cell direction, a cell size, a cell mode, a time-division duplex (TDD) configuration, a measurement timing configuration, cell access information, or connectivity support information.

17. The first IAB donor node of claim 12 , further comprising:

obtaining a second cell configuration data associated with the RAN node comprising data associated with one or more cells of the RAN node activated by the first IAB donor node; and

transmitting the second cell configuration data via the second communications interface to the second IAB donor node for use in migrating the RAN node from the first IAB donor node to the second IAB donor node.

18. The first IAB donor node of claim 17 , wherein the obtaining the second cell configuration data associated with the RAN node comprises deriving the second cell information from the first cell configuration via mapping.

19. The first IAB donor node of claim 17 , wherein the obtaining the second cell configuration data associated with the RAN node comprises receiving the second cell configuration data from the RAN node via the first communications interface.

20. The first IAB donor node of claim 17 , wherein the obtaining the second cell configuration data associated with the RAN node comprises receiving the second cell configuration data from the second IAB donor node via the second communications interface.

21. The first IAB donor node of claim 20 , wherein the second cell configuration comprises mapping data for mapping between the first cell configuration data and the second cell configuration data.

22. The first IAB donor node of claim 12 , wherein the transmitting the processed cell configuration data comprises transmitting the processed cell configuration data in one of a handover preparation messages, a secondary node addition preparation message, a secondary node modification message or a secondary node change message.

23. A first integrated access backhaul (IAB) donor node within an IAB network, comprising:

means for receiving, in the first IAB donor node via a first communications interface, cell configuration data associated with the RAN node, the cell configuration data comprising data associated with one or more cells of the RAN node activated by the first IAB donor node, wherein the RAN node is configured with at least one IAB mobile termination functionality (IAB-MT) and at least one IAB distributed unit functionality (IAB-DU) and wherein the cell configuration data includes one or more of a new radio (NR) Cell Global Identity (NCGI);

means for processing the cell configuration data for migrating the one or more cells to a second IAB donor node; and

means for transmitting the processed cell configuration data, via a second communications interface, to the second IAB donor node for use in migrating the RAN node from the first IAB donor node to the second IAB donor node.

24. The first IAB donor node of claim 23 , wherein

the first communications interface is one of a F1-C or radio resource control (RRC) interface; and

the second communications interface is one of an Xn or X2 interface.

25. The first IAB donor node of claim 23 , further comprising:

means for obtaining a second cell configuration data associated with the RAN node comprising data associated with one or more cells of the RAN node activated by the second IAB donor node; and

means for transmitting the second cell configuration data via the second communications interface to the second IAB donor node for use in migrating the RAN node from the first IAB donor node to the second IAB donor node.

26. A non-transitory computer-readable medium having stored therein instructions executable by one or more processors of a first integrated access backhaul (IAB) donor node to:

receive, in the first IAB donor node via a first communications interface, cell configuration data associated with the RAN node, the cell configuration data comprising data associated with one or more cells of the RAN node activated by the first IAB donor node, wherein the RAN node is configured with at least one IAB mobile termination functionality (IAB-MT) and at least one IAB distributed unit functionality (IAB-DU) and wherein the cell configuration data includes one or more of a new radio(NR) Cell Global Identity (NCGI);

process the cell configuration data for migrating the one or more cells to a second IAB donor node; and

transmit the processed cell configuration data, via a second communications interface, to the second IAB donor node for use in migrating the RAN node from the first IAB donor node to the second IAB donor node.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE PRIORITY APPLICATION INFORMATION ON THE ASSIGMENT DOCUMENT PREVIOUSLY RECORDED AT REEL: 057433 FRAME: 0043. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Dec 13, 2021
From: AKL, NAEEM; HAMPEL, KARL GEORG; ABEDINI, NAVID; LUO, JIANGHONG; BLESSENT, LUCA; LI, JUNYI; LUO, TAO
To: QUALCOMM INCORPORATED
Reel/Frame 058496/0067 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2021
From: AKL, NAEEM; HAMPEL, KARL GEORG; ABEDINI, NAVID; LUO, JIANGHONG; BLESSENT, LUCA; LI, JUNYI; LUO, TAO
To: QUALCOMM INCORPORATED
Reel/Frame 057433/0043 →
Continuity (2)
Provisional Application 63018425 · Apr 30, 2020
Related Publication 20210345206A1 · Nov 4, 2021
Cited By (1)
US 12,713,447