IP Library Granted Patent US 11,659,483
Granted Patent B1
US 11,659,483 · App. 17/659,282 · Granted May 23, 2023

Serving cell selection based on backhaul connection maximum bit rate and packet-drop rate

Inventor: Sreekar Marupaduga (Overland Park, KS)
Assignee: Sprint Spectrum LLC
H04W48/20H04W28/0257H04W28/06H04W76/15H04W88/085H04W88/14
View Patent ↗
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 11,659,483
App. No.
17/659,282
Granted
May 23, 2023
Kind
B1
Abstract

A method and system to control selection of a serving cell for a UE. An example method includes determining respectively for each candidate cell of multiple candidate cells a maximum backhaul bit rate of the candidate cell, determining that a given one of the candidate cells has a highest determined maximum backhaul bit rate among the candidate cells, and based at least on the determining that the given candidate cell has the highest determined maximum backhaul bit rate among the candidate cells, selecting the given candidate cell to be the serving cell for the UE. Further, the method could also include basing the selection on consideration of a backhaul packet-drop rate of the given cell. In example implementations, the selection of a serving cell could be a selection of a PCell for carrier-aggregation service, an anchor cell for dual-connectivity service, or a secondary cell for dual-connectivity service, among other possibilities.

Claims (38)

1. A method to control selection of a serving cell for a user equipment device (UE), the method comprising:

determining respectively for each candidate cell of a plurality of candidate cells a maximum backhaul bit rate of the candidate cell;

determining that at least two of the candidate cells have the same maximum backhaul bit rate as each other; and

responsive to determining that the at least two candidate cells have the same maximum backhaul bit rate as each other, selecting to be the serving cell for the UE a given candidate cell from among the at least two candidate cells, based on a determination that the given candidate cell has a lowest backhaul packet-drop rate among the at least two candidate cells.

2. The method of claim 1 , further comprising:

based on the selecting of the given candidate cell to be the serving cell for the UE, causing the given candidate cell to be the serving cell for the UE.

3. The method of claim 1 , wherein selecting the given candidate cell to be the serving cell for the UE comprises selecting the given candidate cell to be a primary cell (PCell) for carrier-aggregation service of the UE.

4. The method of claim 1 , wherein selecting the given candidate cell to be the serving cell for the UE comprises selecting the given candidate cell to be an anchor cell for dual-connectivity service of the UE.

5. The method of claim 4 , wherein the dual-connectivity service comprises EUTRA-NR Dual Connectivity (EN-DC).

6. The method of claim 1 , wherein selecting the given candidate cell to be the serving cell for the UE comprises selecting the given candidate cell to be a secondary cell, of a secondary connection, for dual-connectivity service of the UE.

7. The method of claim 6 , wherein the dual-connectivity service comprises EUTRA-NR Dual Connectivity (EN-DC).

8. The method of claim 1 , wherein the method is carried out at least in part by an access node currently serving the UE.

9. A computing system configured to control selection of a serving cell for a user equipment device (UE), the computing system comprising:

a network communication interface;

a processing unit;

non-transitory data storage; and

program instructions stored in the non-transitory data storage and executable by the processing unit to carry out operations including:

determining respectively for each candidate cell of a plurality of candidate cells a maximum backhaul bit rate of the candidate cell,

determining that at least two of the candidate cells have the same maximum backhaul bit rate as each other, and

responsive to determining that the at least two candidate cells have the same maximum backhaul bit rate as each other, selecting to be the serving cell for the UE a given candidate cell from among the at least two candidate cells, based on a determination that the given candidate cell has a lowest backhaul packet-drop rate among the at least two candidate cells.

10. The computing system of claim 9 , wherein the operations further include:

based on the selecting of the given candidate cell to be the serving cell for the UE, causing the given candidate cell to be the serving cell for the UE.

11. The computing system of claim 9 , wherein selecting the given candidate cell to be the serving cell for the UE comprises selecting the given candidate cell to be a primary cell (PCell) for carrier-aggregation service of the UE.

12. The computing system of claim 9 , wherein selecting the given candidate cell to be the serving cell for the UE comprises selecting the given candidate cell to be an anchor cell for dual-connectivity service of the UE.

13. The computing system of claim 12 , wherein the dual-connectivity service comprises EUTRA-NR Dual Connectivity (EN-DC).

14. The computing system of claim 9 , wherein selecting the given candidate cell to be the serving cell for the UE comprises selecting the given candidate cell to be a secondary cell, of a secondary connection, for dual-connectivity service of the UE.

15. The computing system of claim 14 , wherein the dual-connectivity service comprises EUTRA-NR Dual Connectivity (EN-DC).

16. In a wireless communication system having a plurality of access nodes providing a plurality of cells in which to serve user equipment devices (UEs), a given one of the access nodes comprising:

a wireless communication interface through which to engage in air-interface communication with served UEs; and

a controller, wherein the controller is configured to cause the given access node to carry out operations for controlling selection of a serving cell for a UE, the operations including:

determining respectively for each of a plurality of candidate cells a maximum backhaul bit rate of the candidate cell,

determining that at least two of the candidate cells have the same maximum backhaul bit rate as each other, and

responsive to determining that the at least two candidate cells have the same maximum backhaul bit rate as each other, selecting to be the serving cell for the UE a given candidate cell from among the at least two candidate cells, based on a determination that the given candidate cell has a lowest backhaul packet-drop rate among the at least two candidate cells.

17. The access node of claim 16 , wherein the controller comprises a processing unit, non-transitory data storage, and program instructions stored in the non-transitory data storage and executable by the processing unit to cause the access node to carry out the operations.

18. The access node claim 16 , wherein the operations additionally include:

based on the selecting of the given candidate cell to be the serving cell for the UE, causing the given candidate cell to be the serving cell for the UE.

19. The access node claim 16 , wherein selecting the given candidate cell to be the serving cell for the UE comprises selecting the given candidate cell to be a primary cell (PCell) for carrier-aggregation service of the UE.

20. The access node of claim 16 , wherein selecting the given candidate cell to be the serving cell for the UE comprises selecting the given candidate cell to be (i) a primary cell (PCell) for carrier-aggregation service of the UE, (ii) an anchor cell for dual-connectivity service of the UE, or (iii) a secondary cell for dual-connectivity service of the UE.

Assignments (2)
CHANGE OF NAME Recorded Apr 4, 2023
From: SPRINT SPECTRUM L.P.
To: SPRINT SPECTRUM LLC
Reel/Frame 063255/0594 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 15, 2022
From: MARUPADUGA, SREEKAR
To: SPRINT SPECTRUM L.P.
Reel/Frame 059607/0397 →
Continuity (1)
Continuation 16947789 · Aug 17, 2020
Cited By (1)
US 12,289,228