IP Library Granted Patent US 11,902,188
Granted Patent B1
US 11,902,188 · App. 15/268,886 · Granted Feb 13, 2024

Systems and methods for location based uplink (UL) multiple-input-multiple-output (MIMO) pairing

Inventors: Shilpa X. Kowdley (Brambleton, VA); Hemanth Pawar (Brambleton, VA); Chunmei Liu (Great Falls, VA); Krishna Sitaram (Chantilly, VA)
Assignee: Sprint Spectrum LP
H04L5/0037H04B7/0452H04B17/336H04W36/08H04W36/38
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Quick Facts
Patent No.
US 11,902,188
App. No.
15/268,886
Granted
Feb 13, 2024
Kind
B1
Abstract

Systems and methods are described for selecting User Equipment(s) (UEs) for pairing in a cellular network. A channel orthogonality of one or more UEs located within a radio range of a first Access Node (AN) may be determined. The one or more UEs may be prioritized for Uplink (UL) Multi-User Multiple-Input-Multiple-Output (MU-MIMO) pairing when a channel orthogonality meets a set channel orthogonality condition. A second AN located within the radio range of the first AN may be detected. At least one of the prioritized UEs located within a radio range of the second AN may be selected for de-prioritization. The prioritized UEs may be paired to share a same set of resource blocks.

Claims (50)

1. A method for selecting wireless devices for pairing in a cellular network, the method comprising:

prioritizing a plurality of wireless devices located within a radio range of a first access node for uplink (UL) multi-user multiple-input-multiple-output (MU-MIMO) pairing, the prioritized wireless devices having a channel orthogonality meeting a channel orthogonality condition;

detecting a second access node located within the radio range of the first access node;

determining a location of each of the prioritized wireless devices with respect to the second access node to detect underlying coverage deployed by the second access node for at least one prioritized wireless device;

selecting, based on the detection of underlying coverage, the at least one prioritized wireless device located within the underlying coverage deployed by the second access node for de-prioritization for UL MU-MIMO pairing;

de-prioritizing the selected wireless device for UL MU-MIMO pairing;

pairing remaining prioritized wireless devices to share a same set of resource blocks; and

serving the at least one de-prioritized wireless device by one of (a) handing over the at least one de-prioritized wireless device to the second access node; or (b) distributing remaining resource blocks from the first access node to the at least one de-prioritized wireless device.

2. The method of claim 1 , wherein the plurality of wireless devices are selected as candidates for UL MU-MIMO pairing from a pool of potential wireless devices.

3. The method of claim 2 , wherein the wireless devices selected as candidates for UL MU-MIMO exceed an UL MU-MIMO pairing threshold.

4. The method of claim 1 , further comprising:

performing a handover of the de-prioritized wireless device from the first access node to the second access node.

5. The method of claim 1 , further comprising:

prioritizing the plurality of wireless devices based on a Signal-to-Interference-Plus-Noise (SINR) ratio reported by the plurality of wireless devices.

6. The method of claim 1 , further comprising:

scheduling the prioritized and de-prioritized wireless devices on different RBs when there are sufficient RBs in a current transmission time interval (TTI) to schedule the prioritized and de-prioritized wireless devices separately.

7. The method of claim 1 , further comprising:

calculating an expected signal-capturing power gain at the first access node after pairing the prioritized wireless devices.

8. The method of claim 1 , wherein wireless devices located at a cell-edge of the first access node are de-prioritized for UL MU-MIMO pairing.

9. A system for selecting wireless devices for pairing in a cellular network, the system comprising:

a processing node configured to:

prioritize a plurality of wireless devices located within a radio range of a first access node for uplink (UL) multi-user multiple-input-multiple-output (MU-MIMO) pairing, the wireless devices having a channel orthogonality meeting a set channel orthogonality condition;

detect a second access node located within the radio range of the first access node;

determine a location of each of the prioritized wireless devices with respect to the second access node to detect underlying coverage deployed by the second access node for at least one prioritized wireless device;

select, based on the detection of underlying coverage, the at least one prioritized wireless device located within underlying coverage deployed by the second access node for de-prioritization for UL MU-MIMO pairing;

de-prioritize the selected wireless device located within a radio range of the second access node for UL MU-MIMO pairing;

pair remaining prioritized wireless devices to share a same set of resource blocks; and

serve the at least one de-prioritized wireless device by one of (a) handing over the at least one de-prioritized wireless device to the second access node; or (b) distributing remaining resource blocks from the first access node to the at least one de-prioritized wireless device.

10. The system of claim 9 , the processing node further configured to:

select the plurality of wireless devices as candidates for UL MU-MIMO pairing from a pool of potential wireless devices.

11. The system of claim 10 , wherein the wireless devices selected as candidates for UL MU-MIMO exceed an UL MU-MIMO pairing threshold.

12. The system of claim 9 , the processing node further configured to:

perform a handover of the de-prioritized wireless device from the first access node to the second access node.

13. The system of claim 9 , the processing node further configured to:

prioritize the plurality of wireless devices based on a Signal-to-Interference-Plus-Noise (SINR) ratio reported by the plurality of wireless devices.

14. The system of claim 9 , the processing node further configured to:

schedule the prioritized and de-prioritized wireless devices on different RBs when there are sufficient RBs in a current transmission time interval (TTI) to schedule the prioritized and de-prioritized wireless devices separately.

15. The system of claim 9 , the processing node further configured to:

calculate an expected signal-capturing power gain at the first access node after pairing the prioritized wireless devices.

16. The system of claim 9 , wherein wireless devices located at a cell-edge of the first access node are de-prioritized for UL MU-MIMO pairing.

17. A method for selecting wireless devices for pairing in a cellular network, the method comprising:

determining, based on a channel condition criteria and a channel orthogonality criteria for one or more wireless devices, that the one or more wireless devices can be served by a first access node for uplink (UL) multi-user multiple-input-multiple-output (MU-MIMO);

prioritizing the one or more wireless devices served by the first access node for ULMU-MIMO pairing;

determining that at least one of the one or more prioritized wireless devices is in a location within a coverage area of a second access node and has underlying coverage deployed by the second access node;

de-prioritizing the at least one prioritized wireless device, based on the location of the at least one prioritized device in the underlying coverage deployed by the second access node, for selection as a UL MU-MIMO wireless device;

pairing remaining prioritized wireless devices to share a same set of resource blocks; and

serving the at least one de-prioritized wireless device by one of (a) handing over the at least one de-prioritized wireless device to the second access node; or (b) distributing remaining resource blocks from the first access node to the at least one de-prioritized wireless device.

18. The method of claim 17 , wherein the channel condition criteria is a Signal-to-Interference-Plus-Noise (SINR) ratio reported by the one or more wireless devices above a threshold.

19. The method of claim 17 , wherein remaining one or more wireless devices are scheduled on a same resource block (RB) when there are insufficient RBs in a current transmission time interval (TTI) to schedule the prioritized and de-prioritized wireless devices separately.

20. The method of claim 17 , wherein the de-prioritized wireless device is located at a cell-edge of the first access node.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Aug 23, 2022
From: DEUTSCHE BANK TRUST COMPANY AMERICAS
To: IBSV LLC; LAYER3 TV, LLC; PUSHSPRING, LLC; T-MOBILE CENTRAL LLC; T-MOBILE USA, INC.; ASSURANCE WIRELESS USA, L.P.; BOOST WORLDWIDE, LLC; CLEARWIRE COMMUNICATIONS LLC; CLEARWIRE IP HOLDINGS LLC; SPRINTCOM LLC; SPRINT COMMUNICATIONS COMPANY L.P.; SPRINT INTERNATIONAL INCORPORATED; SPRINT SPECTRUM LLC
Reel/Frame 062595/0001 →
CHANGE OF NAME Recorded Feb 11, 2022
From: SPRINT SPECTRUM L.P.
To: SPRINT SPECTRUM LLC
Reel/Frame 059044/0022 →
TERMINATION AND RELEASE OF FIRST PRIORITY AND JUNIOR PRIORITY SECURITY INTEREST IN PATENT RIGHTS Recorded Apr 3, 2020
From: DEUTSCHE BANK TRUST COMPANY AMERICAS
To: SPRINT SPECTRUM L.P.
Reel/Frame 052313/0299 →
SECURITY AGREEMENT Recorded Apr 2, 2020
From: T-MOBILE USA, INC.; ISBV LLC; T-MOBILE CENTRAL LLC; LAYER3 TV, INC.; PUSHSPRING, INC.; BOOST WORLDWIDE, LLC; CLEARWIRE COMMUNICATIONS LLC; CLEARWIRE IP HOLDINGS LLC; CLEARWIRE LEGACY LLC; SPRINT COMMUNICATIONS COMPANY L.P.; SPRINT INTERNATIONAL INCORPORATED; SPRINT SPECTRUM L.P.; ASSURANCE WIRELESS USA, L.P.
To: DEUTSCHE BANK TRUST COMPANY AMERICAS
Reel/Frame 053182/0001 →
GRANT OF FIRST PRIORITY AND JUNIOR PRIORITY SECURITY INTEREST IN PATENT RIGHTS Recorded Mar 3, 2017
From: SPRINT SPECTRUM L.P.
To: DEUTSCHE BANK TRUST COMPANY AMERICAS
Reel/Frame 041937/0632 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2016
From: KOWDLEY, SHILPA X.; PAWAR, HEMANTH; LIU, CHUNMEI; SITARAM, KRISHNA
To: SPRINT SPECTRUM LP
Reel/Frame 039779/0490 →
Cited By (2)
US 12,563,441 US 12,671,469