IP Library Granted Patent US 11,418,237
Granted Patent B1
US 11,418,237 · App. 16/949,776 · Granted Aug 16, 2022

Use of per-connection MIMO support as basis for dynamic control of air-interface communication with dual-connected device

Inventor: Sreekar Marupaduga (Overland Park, KS)
Assignee: Sprint Spectrum L.P.
H04B7/0413H04W76/10
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Quick Facts
Patent No.
US 11,418,237
App. No.
16/949,776
Granted
Aug 16, 2022
Kind
B1
Abstract

A method and system for controlling data split of a dual-connected user equipment device (UE) when the UE has at least two co-existing air-interface connections including a first air-interface connection with a first access node and a second air-interface connection with a second access node. An example method includes (i) comparing a level of multiple-input-multiple-output (MIMO) support of the first air-interface connection with a level of MIMO support of the second air-interface connection, (ii) based at least on the comparing, establishing a split ratio that defines a distribution of data flow of the UE between at least the first air-interface connection and the second air-interface connection, and (iii) based on the establishing, causing the established split ratio to be applied. Further the method could include using the comparison as a basis to set one of the UE's air-interface connections as the UE's primary uplink path.

Claims (31)

1. A method for controlling data split of a dual-connected user equipment (UE) when the UE has at least two co-existing air-interface connections including a first air-interface connection with a first access node and a second air-interface connection with a second access node, the method comprising:

determining a level of multiple-input-multiple-output (MIMO) support of the first air-interface connection based on a maximum number of MIMO layers on which the UE is servable on the first air-interface connection;

determining a level of MIMO support of the second air-interface connection based on a maximum number of MIMO layers on which the UE is servable on the second air-interface connection;

comparing the determined level of MIMO support of the first air-interface connection with the determined level of MIMO support of the second air-interface connection;

based at least on the comparing, establishing a split ratio that defines a distribution of data flow of the UE between at least the first air-interface connection and the second air-interface connection; and

based on the establishing, causing the established split ratio to be applied.

2. The method of claim 1 , wherein the established split ratio is an uplink split ratio, and wherein causing the established split ratio to be applied comprises transmitting to the UE a directive that causes the UE to apply the established split ratio.

3. The method of claim 1 , wherein the established split ratio is a downlink split ratio, wherein an entity splits downlink data flow of the UE between the first air-interface connection and the second air-interface connection, and wherein causing the established split ratio to be applied comprises causing the entity to apply the established split ratio.

4. The method of claim 1 , wherein the method is carried out by at least one of the first access node and the second access node.

5. The method of claim 1 , wherein establishing the split ratio based on the comparing of the determined level of MIMO support of the first air-interface connection with the determined level of MIMO support of the second air-interface connection comprises establishing the split ratio based on a ratio of (i) the determined level of MIMO support of the first air-interface connection to (ii) the determined level of MIMO support of the second air-interface connection.

6. The method of claim 5 , wherein establishing the split ratio based on the ratio of the determined level of MIMO support of the first air-interface connection to the determined level of MIMO support of second air-interface connection comprises establishing the split ratio to be equal to the ratio of (i) the determined level of MIMO support of the first air-interface connection to (ii) the determined level of MIMO support of the second air-interface connection.

7. The method of claim 1 , wherein establishing the split ratio based on the comparing of the determined level of MIMO support of the first air-interface connection with the determined level of MIMO support of the second air-interface connection comprises:

selecting one of the first and second air-interface connections based on the determined level of MIMO support of the selected air-interface connection being higher than the determined level of MIMO support of the other of the first and second air-interface connections; and

based on the selecting, establishing as the split ratio a split ratio that will put a majority of the data flow of the UE on the selected air-interface connection.

8. The method of claim 1 , wherein the first air-interface connection operates in accordance with a first radio access technology (RAT) and the second air-interface connection operates in accordance with a second RAT different than the first RAT.

9. A computing system configured to control data split of a dual-connected user equipment (UE) when the UE has at least two co-existing air-interface connections including a first air-interface connection with a first access node and a second air-interface connection with a second access node, the computing system comprising:

a processor;

non-transitory data storage; and

program instructions stored in the non-transitory data storage and executable by the processor to cause the computing system to carry out operations including:

determining a level of multiple-input-multiple-output (MIMO) support of the first air-interface connection based on a maximum number of MIMO layers on which the UE is servable on the first air-interface connection,

determining a level of MIMO support of the second air-interface connection based on a maximum number of MIMO layers on which the UE is servable on the second air-interface connection,

comparing the determined level of MIMO support of the first air-interface connection with the determined level of MIMO support of the second air-interface connection,

based at least on the comparing, establishing a split ratio that defines a distribution of data flow of the UE between at least the first air-interface connection and the second air-interface connection, and

based on the establishing, causing the established split ratio to be applied.

10. The computing system of claim 9 , wherein the computing system is at a given one of the first and second access nodes.

11. The computing system of claim 9 , wherein the established split ratio is an uplink split ratio, and wherein causing the established split ratio to be applied comprises transmitting to the UE a directive that causes the UE to apply the established split ratio.

12. The computing system of claim 9 , wherein the established split ratio is a downlink split ratio, wherein an entity splits downlink data flow of the UE between the first air-interface connection and the second air-interface connection, and wherein causing the established split ratio to be applied comprises causing the entity to apply the established split ratio.

13. The computing system of claim 9 , wherein establishing the split ratio based on the comparing of the determined level of MIMO support of the first air-interface connection with the determined level of MIMO support of the second air-interface connection comprises establishing the split ratio based on a ratio of (i) the determined level of MIMO support of the first air-interface connection to (ii) the determined level of MIMO support of the second air-interface connection.

14. The computing system of claim 9 , wherein establishing the split ratio based on the comparing of the determined level of MIMO support of the first air-interface connection with the determined level of MIMO support of the second air-interface connection comprises:

selecting one of the first and second air-interface connections based on the determined level of MIMO support of the selected air-interface connection being greater than the determined level of MIMO support of the other of the first and second air-interface connections; and

based on the selecting, establishing as the split ratio a split ratio that will put a majority of the data flow of the UE on the selected air-interface connection.

Assignments (2)
CHANGE OF NAME Recorded Feb 11, 2022
From: SPRINT SPECTRUM L.P.
To: SPRINT SPECTRUM LLC
Reel/Frame 059044/0022 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2020
From: MARUPADUGA, SREEKAR
To: SPRINT SPECTRUM L.P.
Reel/Frame 054363/0329 →