IP Library Granted Patent US 11,540,184
Granted Patent B1
US 11,540,184 · App. 17/065,006 · Granted Dec 27, 2022

Dynamic handover trigger based on primary path throughput

Inventor: Sreekar Marupaduga (Overland Park, KS)
Assignee: T-Mobile Innovations LLC
H04W36/0058H04L5/0048H04W36/0079H04W36/08
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Quick Facts
Patent No.
US 11,540,184
App. No.
17/065,006
Granted
Dec 27, 2022
Kind
B1
Abstract

Systems and methods are provided for dynamically triggering a handover of a wireless device based on a throughput measurement of a source node and a target node on a primary path. The method includes comparing the first throughput measurement at the source access node for the primary path to the second throughput measurement at the target access node or comparing both throughput measurements to predetermined criteria and making a handover determination for the wireless device based on the comparison.

Claims (38)

1. A method for managing a handover of a wireless device, the method comprising;

identifying a primary path and a secondary path for the wireless device based on a percentage of a total volume of data transmitted over the primary path and the secondary path for the wireless device, wherein the percentage of the total volume transmitted over the primary path is greater than the percentage of the total volume transmitted over the secondary path, and wherein the secondary path connects the wireless device to a master node utilizing a first RAT and the primary path connects the wireless device to a secondary node using a second RAT, wherein the wireless device connects to the master node and the secondary node simultaneously;

identifying a first throughput measurement at the connected secondary node, the connected secondary node functioning as a source access node for the primary path of the wireless device;

identifying a second throughput measurement at a target access node for the primary path, wherein the target access node is another secondary node using the second RAT:

comparing the first throughput measurement at the source access node for the primary path to the second throughput measurement at the target access node for the primary path;

making a handover determination for the wireless device based on the comparison, wherein making the handover determination comprises selecting the target access node as a new secondary node for providing the primary path for the wireless device when the second throughput measurement exceeds the first throughput measurement; and

executing the handover by dropping the source access node and adding the target access node for connection with the wireless device, thereby allowing the wireless device to remain connected to the first RAT through the master node and the second RAT through the target access node.

2. The method of claim 1 , further comprising determining that a reference signal receive power (RSRP) at one of the source access node and the target access node satisfies a first predetermined threshold prior to comparing the first throughput measurement with the second throughput measurement.

3. The method of claim 2 , further comprising delaying the handover of the wireless device from the source access node to the target access node based on the comparison of the first and second throughput measurements.

4. The method of claim 2 , further comprising delaying the handover until the RSRP at the source access node satisfies a second predetermined threshold.

5. The method of claim 1 , further comprising delaying the handover when the second throughput measurement of the target access node is below a first predetermined value.

6. The method of claim 5 , wherein the first predetermined value is equal to the first throughput measurement.

7. The method of claim 1 , wherein the first throughput measurement and the second throughput measurement are made dynamically at the source access node and the target access node.

8. The method of claim 1 , further comprising retrieving the first throughput measurement and the second throughput measurement from an element management system.

9. The method of claim 1 , further comprising performing the method at the master node, wherein the source access node and the target access node are secondary nodes.

10. A system comprising:

at least one master node, the master node connecting with a wireless device through a secondary path, and multiple secondary nodes, one of the secondary nodes functioning as a source access node and providing a primary path for the wireless device;

a processor coupled to the master node configured to perform operations comprising,

identifying the primary path and a secondary path for the wireless device based on a percentage of a total volume of data transmitted over the primary path and a secondary path for the wireless device, wherein the percentage of the total volume transmitted over the primary path is greater than the percentage of the total volume transmitted over the secondary path, and wherein the secondary path connects the wireless device to the master node utilizing a first RAT and the primary path connects the wireless device to the source access node using a second RAT, wherein the wireless device connects to the master node and the source access node simultaneously;

identifying a first throughput measurement at the source access node for the primary path of the wireless device;

identifying a second throughput measurement at a target access node, wherein the target access node is selected from the multiple secondary nodes using the second RAT:

comparing the first throughput measurement at the source access node for the primary path to the second throughput measurement at the target access node;

making a handover determination for the wireless device based on the comparison, wherein making the handover determination comprises selecting the target access node as a new secondary node providing the primary path to the wireless device when the second throughput measurement exceeds the first throughput measurement; and

executing the handover by dropping the source access node and adding the target access node for connection with the wireless device, thereby allowing the wireless device to remain connected to the first RAT through the master node and the second RAT through the target access node.

11. The system of claim 10 , the operations further comprising determining that a reference signal receive power (RSRP) at one of the source access node and the target access node satisfies a first predetermined threshold prior to comparing the first throughput measurement with the second throughput measurement.

12. The system of claim 11 , the operations further comprising delaying the handover of the wireless device from the source access node to the target access node based on the comparison of the first and second throughput measurements.

13. The system of claim 11 , the operations further comprising delaying the handover until the RSRP at the source access node satisfies a second predetermined threshold.

14. The system of claim 10 , the operations further comprising delaying the handover when the second throughput measurement of the target access node is below a first predetermined value.

15. The system of claim 14 , wherein the first predetermined value is equal to the first throughput measurement.

16. A processing node configured to perform operations comprising:

identifying a wireless device having a primary path and a secondary path, wherein the primary path and the secondary path for the wireless device are identified based on a percentage of a total volume of data transmitted over the primary path and a secondary path for the wireless device, wherein the percentage of the total volume transmitted over the primary path is greater than the percentage of the total volume transmitted over the secondary path, and wherein the secondary path connects the wireless device to a master node using a first RAT and the primary path connects the wireless device to a secondary node using a second RAT;

comparing a first throughput measurement at a source access node for the primary path of the wireless device with handover criteria, wherein the source access node is one of multiple secondary nodes using the second RAT;

comparing a second throughput measurement at a target access node with the handover criteria, wherein the target access node is another of multiple secondary nodes using the second RAT;

executing the handover when the second throughput measurement and the first throughput measurement satisfy the handover criteria by dropping the source access node and adding the target access node for connection with the wireless device, thereby allowing the wireless device to remain connected to the first RAT through the master node and the second RAT through the target access node; and

delaying a handover of the wireless device from the source access node to the target access node when the at least one of the first throughput measurement and the second throughput measurement fails to satisfy the handover criteria, wherein the wireless device remains connected to the master node and the source access node.

17. The processing node of claim 16 , the operations further comprising determining that a reference signal receive power (RSRP) at one of the source access node and the target access node satisfies a first predetermined threshold prior to comparing the first throughput measurement and the second throughput measurement to the handover criteria.

18. The processing node of claim 17 , the operations further comprising delaying the handover until the RSRP satisfies the first predetermined threshold.

19. The processing node of claim 16 , wherein the processing node is incorporated in the master node.

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 Oct 8, 2020
From: MARUPADUGA, SREEKAR
To: SPRINT SPECTRUM LP
Reel/Frame 054009/0848 →