IP Library Granted Patent US 9,736,883
Granted Patent B2
US 9,736,883 · App. 14/167,405 · Granted Aug 15, 2017

Method and apparatus for handling inter-node connectivity in a wireless communication system

Inventors: Yu-Hsuan Guo (Taipei, TW); Meng-Hui Ou (Taipei, TW)
Assignee: INNOVATIVE SONIC CORPORATION
H04W76/064H04L5/0098H04W36/28H04W92/20
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Quick Facts
Patent No.
US 9,736,883
App. No.
14/167,405
Granted
Aug 15, 2017
Kind
B2
Abstract

A method and apparatus for handling inter-node connectivity in a wireless communication system are disclosed. The method includes transmitting a request from a first network node to a second network node to stop aggregating a SCell (Secondary Cell) for a UE (User Equipment); wherein the first network node controls the SCell and the second network node controls PCell (Primary Cell) of the UE. Also, another method and apparatus for handling inter-node connectivity in a wireless communication system are disclosed. The method includes transmitting a request from a first network node, which controls a first serving cell of a UE (User Equipment), to a second network node, which controls a second serving cell of the UE, to change a data path corresponding to a first type of transmission and/or reception of the UE from a first path to a different path; wherein the first path is via the first network node and used as the data path corresponding to the first type of transmission and/or reception of the UE, and a second path is via the second network node and used as a data path corresponding to a second type of transmission and/or reception of the UE. In addition, an alternative method and apparatus for handling inter-node connectivity in a wireless communication system are disclosed. The method includes transmitting a request from a first network node to a core network node to change a data path corresponding to a first type of transmission and/or reception of a UE (User Equipment) from a first path to a different path; wherein the first path is via the first network node and used as the data path corresponding to the first type and a third type of transmission and/or reception of the UE, a second path is via a second network node and used as a data path corresponding to a second type of transmission and/or reception of the UE, and the request does not indicate to change the data path corresponding to the third type of transmission and/or reception of the UE.

Claims (54)

1. A method for handling inter-node connectivity in a wireless communication system, comprising:

receiving, by a first evolved node B (eNB), a first request from a second eNB for aggregating a Secondary Cell (SCell) for a User Equipment (UE);

transmitting an accept message from the first eNB to the second eNB in response to the first request; and

transmitting a second request from the first eNB, which controls the SCell of the UE, to the second eNB, which controls a Primary Cell (PCell) of the UE, to change a data path for a first radio bearer of the UE, wherein the second request does not indicate to change the data path for a third radio bearer of the UE;

wherein a first path is via the first eNB and used as the data path for the first radio bearer and the third radio bearer before changing the data path for the first radio bearer.

2. The method of claim 1 , wherein the data path for the first radio bearer is changed to a second path, wherein the second path is via the second eNB and used as a data path for a second radio bearer of the UE.

3. The method of claim 1 , wherein the second request includes a cause for data path changing.

4. The method of claim 1 , wherein the UE has multiple paths via different eNBs after the data path for the first radio bearer change.

5. The method of claim 1 , further comprising:

receiving, by the first eNB, a confirmation message from the second eNB for changing the data path for the first radio bearer.

6. The method of claim 1 , wherein the second request comprises information about loading status of a cell controlled by the first eNB.

7. A method for handling inter-node connectivity in a wireless communication system, comprising:

transmitting a first request from a second evolved Node B (eNB) to a first evolved Node B (eNB) for aggregating a Secondary Cell (SCell) for a User Equipment (UE);

receiving, by the second eNB, an accept message from the first eNB in response to the first request;

receiving, by the second eNB which controls a Primary Cell (PCell) of the UE, a second request from the first eNB which controls the SCell of the UE; and

changing a data path for a first radio bearer of the UE and not changing a data path for a third radio bearer of the UE based on the second request;

wherein a first path is via the first eNB and used as the data path for the first radio bearer and the third radio bearer before changing the data path for the first radio bearer.

8. The method of claim 7 , wherein the data path for the first radio bearer is changed to a second path, wherein the second path is via the second eNB and used as a data path for a second radio bearer of the UE.

9. The method of claim 7 , further comprising:

transmitting a confirmation message from the second eNB to the first eNB for changing the data path for the first radio bearer.

10. The method of claim 7 , wherein the UE has multiple paths via different eNBs after the data path for the first radio bearer change.

11. The method of claim 7 , wherein the second request comprises information about loading status of a cell controlled by the first eNB.

12. The method of claim 1 , wherein the first eNB terminates transmission and/or reception of the first radio bearer when receiving a confirmation message for the second request.

13. A communication device to handle inter-node connectivity in a wireless communication system, comprising:

a control circuit;

a processor installed in the control circuit;

a memory installed in the control circuit and operatively coupled to the processor;

wherein the processor is configured to execute a program code stored in the memory to handle inter-node connectivity by:

receiving, by a first evolved node B (eNB), a first request from a second eNB for aggregating a Secondary Cell (SCell) for a User Equipment (UE);

transmitting an accept message from the first eNB to the second eNB in response to the first request; and

transmitting a second request from the first eNB, which controls the SCell of the UE, to the second eNB, which controls a Primary Cell (PCell) of the UE, to change a data path for a first radio bearer of the UE, wherein the second request does not indicate to change the data path for a third radio bearer of the UE;

wherein a first path is via the first eNB and used as the data path for the first radio bearer and the third radio bearer before changing the data path for the first radio bearer.

14. The communication device of claim 13 , wherein the data path for the first radio bearer is changed to a second path, wherein the second path is via the second eNB and used as a data path for a second radio bearer of the UE.

15. The communication device of claim 13 , wherein the second request includes a cause for data path changing.

16. The communication device of claim 13 , wherein the UE has multiple paths via different eNBs after the data path for the first radio bearer change.

17. The communication device of claim 13 , wherein the program code further comprises:

receiving, by the first eNB, a confirmation message from the second eNB for changing the data path for the first radio bearer.

18. The communication device of claim 13 , wherein the second request comprises information about loading status of a cell controlled by the first eNB.

19. The communication device of claim 13 , wherein the first eNB terminates transmission and/or reception of the first radio bearer when receiving a confirmation message for the second request.

20. A communication device to handle inter-node connectivity in a wireless communication system, comprising:

a control circuit;

a processor installed in the control circuit;

a memory installed in the control circuit and operatively coupled to the processor;

wherein the processor is configured to execute a program code stored in the memory to handle inter-node connectivity by:

transmitting a first request from a second evolved Node B (eNB) to a first evolved Node B (eNB) for aggregating a Secondary Cell (SCell) for a User Equipment (UE);

receiving, by the second eNB, an accept message from the first eNB in response to the first request;

receiving, by the second eNB which controls a Primary Cell (PCell) of the UE, a second request from the first eNB which controls the SCell of the UE; and

changing a data path for a first radio bearer of the UE and not changing a data path for a third radio bearer of the UE based on the second request;

wherein a first path is via the first eNB and used as the data path for the first radio bearer and the third radio bearer before changing the data path for the first radio bearer.

21. The communication device of claim 20 , wherein the data path for the first radio bearer is changed to a second path, wherein the second path is via the second eNB and used as a data path for a second radio bearer of the UE.

22. The communication device of claim 20 , wherein the program code further comprises:

transmitting a confirmation message from the second eNB to the first eNB for changing the data path for the first radio bearer.

23. The communication device of claim 20 , wherein the UE has multiple paths via different eNBs after the data path for the first radio bearer change.

24. The communication device of claim 20 , wherein the second request comprises information about loading status of a cell controlled by the first eNB.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 12, 2023
From: INNOVATIVE SONIC CORPORATION
To: INNOVATIVE SONIC LIMITED
Reel/Frame 065195/0780 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2014
From: GUO, YU-HSUAN; OU, MENG-HUI
To: INNOVATIVE SONIC CORPORATION
Reel/Frame 032080/0569 →
Continuity (3)
Provisional Application 61758418 · Jan 30, 2013
Provisional Application 61768761 · Feb 25, 2013
Related Publication 20140211759A1 · Jul 31, 2014