IP Library Granted Patent US 11,582,665
Granted Patent B2
US 11,582,665 · App. 16/214,944 · Granted Feb 14, 2023

System and method for wireless link configuration

Inventors: Philippe Sartori (Plainfield, IL); Zhongfeng Li (Munich, DE); Anthony C. K. Soong (Plano, TX)
Assignee: Futurewei Technologies, Inc.
H04W36/10H04W36/0055H04W84/047H04W88/04
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 11,582,665
App. No.
16/214,944
Granted
Feb 14, 2023
Kind
B2
Abstract

A method for operating a relay node during a handoff from a first controller to a second controller includes receiving a first instruction from the first controller to discontinue using a first set of wireless backhaul link resources allocated to the relay node by the first controller and to temporarily use a second set of wireless backhaul link resources dedicated by the second controller. The method also includes receiving a second instruction from the second controller to discontinue using the second set of wireless backhaul link resources and to begin using a third set of wireless backhaul link resources allocated to the relay node by the second controller.

Claims (60)

1. A method comprising:

receiving, by a target controller, a handoff of a relay node from a source controller;

instructing, by the target controller, the relay node to temporarily use a first set of wireless backhaul link resources for communication between the target controller and the relay node during the handoff, the first set of wireless backhaul link resources instructed for temporary use between the target controller and the relay node being allocated and shared by both the target controller and the source controller during a common time period for the handoff of the relay node from the source controller to the target controller;

transmitting or receiving, by the target controller after the instructing, a first backhaul signal over the first set of wireless backhaul link resources to or from the relay node;

transmitting, by the target controller, an allocation of a second set of wireless backhaul link resources to the relay node; and

transmitting to the relay node or receiving from the relay node, by the target controller after the transmitting the allocation, a second backhaul signal over the second set of wireless backhaul link resources.

2. The method of claim 1 , wherein the first set of wireless backhaul link resources is a subset of the second set of wireless backhaul link resources.

3. The method of claim 1 , wherein communication with the source controller constitutes at least a part of a handover process.

4. The method of claim 1 , wherein the target controller operates in a Third Generation Partnership Project Long Term Evolution compliant communications system.

5. A target controller comprising:

a non-transitory memory storage comprising instructions; and

at least one processor in communication with the non-transitory memory storage, wherein the at least one processor executes the instructions to cause the target controller to:

receive a handoff of a relay node from a source controller;

instruct the relay node to temporarily use a first set of wireless backhaul link resources to establish communication between the target controller and the relay node during the handoff, the first set of wireless backhaul link resources instructed for temporary use between the target controller and the relay node being allocated and shared by both the target controller and the source controller during a common time period for the handoff of the relay node from the source controller to the target controller;

transmit or receive, after instructing the relay node to temporarily use the first set of wireless backhaul link resources, a first backhaul signal over the first set of wireless backhaul link resources to or from the relay node;

transmit an allocation of a second set of wireless backhaul link resources to the relay node; and

transmit to the relay node or receive from the relay node, after transmission of the allocation, a second backhaul signal over the second set of wireless backhaul link resources.

6. The target controller of claim 5 , wherein communication with the source controller constitutes at least a part of a handover process.

7. The target controller of claim 5 , wherein the first set of wireless backhaul link resources is a subset of the second set of wireless backhaul link resources.

8. The target controller of claim 5 , wherein the target controller operates in a Third Generation Partnership Project Long Term Evolution compliant communications system.

9. A computer program product comprising a non-transitory computer readable storage medium storing programming, the programming including instructions that cause a target controller to:

receive a handoff of a relay node from a source controller;

instruct the relay node to temporarily use a first set of wireless backhaul link resources for communication between the target controller and the relay node during the handoff, the first set of wireless backhaul link resources instructed for temporary use between the target controller and the relay node being allocated and shared by both the target controller and the source controller during a common time period for the handoff of the relay node from the source controller to the target controller;

transmit or receive, after instructing the relay node to temporarily use the first set of wireless backhaul link resources, a first backhaul signal over the first set of wireless backhaul link resources to or from the relay node;

transmit an allocation of a second set of wireless backhaul link resources to the relay node; and

transmit to the relay node or receive from the relay node, after transmission of the allocation, a second backhaul signal over the second set of wireless backhaul link resources.

10. The computer program product of claim 9 , wherein the first set of wireless backhaul link resources is a subset of the second set of wireless backhaul link resources.

11. The computer program product of claim 9 , wherein the communication with the target controller constitutes at least a part of a handover process.

12. The computer program product of claim 9 , wherein the target controller operates in a Third Generation Partnership Project Long Term Evolution compliant communications system.

13. A target controller comprising:

a receiver configured to:

receive a handoff of a relay node from a source controller; and

a transmitter configured to:

transmit an instruction to the relay node to temporarily use a first set of wireless backhaul link resources for communication between the target controller and the relay node during the handoff;

transmit or receive, after transmission of the instruction, a first backhaul signal over the first set of wireless backhaul link resources to or from the relay node;

transmit an allocation of a second set of wireless backhaul link resources to the relay node, the first set of wireless backhaul link resources instructed for temporary use between the target controller and the relay node being allocated and shared by both the target controller and the source controller during a common time period for the handoff of the relay node from the source controller to the target controller; and

transmit to the relay node or receive from the relay node, after transmission of the allocation, a second backhaul signal over the second set of wireless backhaul link resources.

14. The target controller of claim 13 , wherein the first set of wireless backhaul link resources is a subset of the second set of wireless backhaul link resources.

15. The target controller of claim 13 , wherein the communication with the target controller constitutes at least a part of a handover process.

16. The target controller of claim 13 , wherein the target controller operates in a Third Generation Partnership Project Long Term Evolution compliant communications system.

17. A method comprising:

receiving, by a target controller, a handoff of a relay node from a source controller;

transmitting, by the target controller, an instruction to the relay node, the instruction instructing the relay node to temporarily use a first set of wireless backhaul link resources for communication between the target controller and the relay node during the handoff, the first set of wireless backhaul link resources instructed for temporary use between the target controller and the relay node being allocated and shared by both the target controller and the source controller during a common time period for the handoff of the relay node from the source controller to the target controller;

transmitting or receiving, by the target controller after transmission of the instruction, a first backhaul signal over the first set of wireless backhaul link resources to or from the relay node;

transmitting, by the target controller, a grant allocating a second set of wireless backhaul link resources to the relay node; and

transmitting to the relay node or receiving from the relay node, by the target controller after transmission of the grant, a second backhaul signal over the second set of wireless backhaul link resources.

18. The method of claim 17 , wherein the first set of wireless backhaul link resources is a subset of the second set of wireless backhaul link resources.

19. The method of claim 17 , wherein communication with the source controller constitutes at least a part of a handover process.

20. The method of claim 17 , wherein the target controller operates in a Third Generation Partnership Project Long Term Evolution compliant communications system.

21. A target controller comprising:

a non-transitory memory storage comprising instructions; and

at least one processor in communication with the non-transitory memory storage, wherein the at least one processor executes the instructions to cause the target controller to:

receive a handoff of a relay node from a source controller;

transmit an instruction to the relay node, the instruction instructing the relay node to temporarily use a first set of wireless backhaul link resources for communication between the target controller and the relay node during the handoff, the first set of wireless backhaul link resources instructed for temporary use between the target controller being allocated and shared by both the target controller and the source controller during a common time period for the handoff of the relay node from the source controller to the target controller;

transmit, after transmission of the instruction, a first backhaul signal over the first set of wireless backhaul link resources to or from the relay node;

transmit a grant allocating a second set of wireless backhaul link resources to the relay node; and

transmit to the relay node or receive from the relay node, after transmission of the grant, a second backhaul signal over the second set of wireless backhaul link resources.

22. The target controller of claim 21 , wherein the first set of wireless backhaul link resources is a subset of the second set of wireless backhaul link resources.

23. The target controller of claim 21 , wherein communication with the source controller constitutes at least a part of a handover process.

24. The target controller of claim 21 , wherein the target controller operates in a Third Generation Partnership Project Long Term Evolution compliant communications system.

Continuity (2)
Division 13348981 · Jan 12, 2012
Related Publication 20190124562A1 · Apr 25, 2019