IP Library › Granted Patent US 9,750,069
Granted Patent B2
US 9,750,069 · App. 14/432,874 · Granted Aug 29, 2017

Radio communication system, base station, mobile station, communication control method, and computer readable medium

Inventors: Hiroaki Aminaka (Tokyo, JP); Hisashi Futaki (Tokyo, JP)
Assignee: NEC Corporation
H04W76/025H04W16/14H04W72/0406H04W72/0453H04W76/022H04W16/32H04W92/14H04W92/20
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Quick Facts
Patent No.
US 9,750,069
App. No.
14/432,874
Granted
Aug 29, 2017
Kind
B2
Abstract

A first base station ( 1 ) is configured to establish a first signaling bearer with a mobility management apparatus ( 5 ), establish a second signaling bearer with a second base station ( 2 ), and to establish a signaling radio bearer with a mobile station ( 3 ) in a first cell ( 10 ). The second base station ( 2 ) is configured to establish the second signaling bearer with the first base station ( 1 ), establish a data bearer with a data transfer apparatus ( 6 ), and to establish a data radio bearer with the mobile station ( 3 ) in a second cell ( 20 ). Furthermore, the first base station ( 1 ) is configured to transmit, to the second base station ( 2 ) through the second signaling bearer configuration information, necessary to establish the data bearer and the data radio bearer in the second base station ( 2 ). Thus, for example, bearer architecture suitable for a C/U plane split scenario is provided.

Claims (114)

1. A radio communication system comprising:

a first base station that operates a first cell;

a second base station that operates a second cell;

a core network including a mobility management apparatus and a data transfer apparatus; and

a mobile station, wherein

the first base station is configured to establish a first signaling bearer with the mobility management apparatus, establish a second signaling bearer with the second base station, and to establish a signaling radio bearer with the mobile station in the first cell,

the second base station is configured to establish the second signaling bearer with the first base station, establish a data bearer with the data transfer apparatus, and to establish a data radio bearer with the mobile station in the second cell,

the first base station is further configured to transmit, to the second base station through the second signaling bearer, configuration information to establish the data bearer and the data radio bearer in the second base station; and

the first base station is further configured to transmit, to the mobility management apparatus through the first signaling bearer, an E-UTRAN Radio Access Bearer (E-RAB) indication including an address and a Tunnel Endpoint Identifier (TEID) of the second base station.

2. The radio communication system according to claim 1 , wherein the first base station is further configured to transmit an establishment request of the data bearer to the mobility management apparatus through the first signaling bearer.

3. The radio communication system according to claim 1 , wherein the first base station is further configured to transmit, to the mobile station through the signaling radio bearer, configuration information to establish the data radio bearer in the mobile station.

4. The radio communication system according to claim 1 , wherein user data is transferred between the core network and the mobile station through the data bearer and the data radio bearer.

5. The radio communication system according to claim 1 , wherein the mobile station is configured to transmit or receive user data through the data radio bearer without setting a signaling radio bearer with the second base station.

6. The radio communication system according to claim 1 , wherein a non-access stratum control message is transferred between the core network and the mobile station through the first signaling bearer and the signaling radio bearer.

7. The radio communication system according to claim 1 , wherein

the data bearer is a tunnel through which tunnel packets encapsulating user data are transferred, and

the tunnel packets are transferred between the data transfer apparatus and the second base station not via the first base station.

8. The radio communication system according to claim 7 , wherein the second base station is further configured to notify the first base station of a utilization status of at least one of the data bearer and the data radio bearer.

9. The radio communication system according to claim 8 , wherein the first base station is further configured to control update of configuration of the data bearer and the data radio bearer based on the utilization status.

10. The radio communication system according to claim 1 , wherein

the data bearer is a tunnel through which tunnel packets encapsulating user data are transferred, and

the tunnel packets are transferred between the data transfer apparatus and the second base station via the first base station.

11. The radio communication system according to claim 10 , wherein the first base station is further configured to monitor the tunnel packets, and control update of configuration of the data bearer and the data radio bearer based on a monitoring result of the tunnel packets.

12. The radio communication system according to claim 1 , wherein the first base station is further configured to request establishment of the data bearer and the data radio bearer in order to use the second cell for transferring user data regarding the mobile station when a predetermined condition is satisfied.

13. The radio communication system according to claim 12 , wherein the predetermined condition relates to at least one of bearer priority, a delay amount allowed to the user data, a load of the second base station, a positional relation of the mobile station and the second base station, and mobility of the mobile station.

14. The radio communication system according to claim 1 , wherein the first base station is further configured to determine which of the first cell and the second cell is used for transferring user data of the mobile station, and to request establishment of the data bearer and the data radio bearer in response to determining the use of the second cell.

15. A mobile station used in combination with the radio communication system according to claim 1 , the mobile station comprising:

a radio communication unit; and

a control unit configured to receive configuration information of the data radio bearer from the first base station, and to control the radio communication unit so as to receive or transmit user data through the second cell.

16. The mobile station according to claim 15 , wherein the control unit controls transmission or reception of the user data through the data radio bearer, without setting a signaling radio bearer with the second base station.

17. A first base station comprising:

a radio communication configured to operate a first cell; and

a control unit configured to:

perform control so as to establish a first signaling bearer with a mobility management apparatus in a core network, establish a second signaling bearer with a second base station that operates a second cell, and so as to establish a signaling radio bearer with a mobile station in the first cell;

transmit, to the second base station through the second signaling bearer, configuration information to establish a data bearer and a data radio bearer in the second base station; and

transmit, to the mobility management apparatus through the first signaling bearer, an E-UTRAN Radio Access Bearer (E-RAB) indication including an address and a Tunnel Endpoint Identifier (TEID) of the second base station, wherein

the data bearer is established between a data transfer apparatus in the core network and the second base station, and

the data radio bearer is established between the second base station and the mobile station in the second cell.

18. The first base station according to claim 17 , wherein the control unit is further configured to transmit an establishment request of the data bearer to the mobility management apparatus through the first signaling bearer.

19. The first base station according to claim 17 , wherein the control unit is further configured to transmit, to the mobile station through the signaling radio bearer, configuration information to establish the data radio bearer in the mobile station.

20. The first base station according to claim 17 , wherein user data is transferred between the core network and the mobile station through the data bearer and the data radio bearer.

21. The first base station according to claim 17 , wherein a non-access stratum control message is transferred between the core network and the mobile station through the first signaling bearer and the signaling radio bearer.

22. The first base station according to claim 17 , wherein

the data bearer is a tunnel through which tunnel packets encapsulating user data are transferred, and

the tunnel packets are transferred between the data transfer apparatus and the second base station not via the first base station.

23. The first base station according to claim 17 , wherein the control unit is further configured to receive a utilization status of at least one of the data bearer and the data radio bearer from the second base station, and control update of configuration of the data bearer and the data radio bearer based on the utilization status.

24. The first base station according to claim 17 , wherein

the data bearer is a tunnel through which tunnel packets encapsulating user data are transferred, and

the tunnel packets are transferred between the data transfer apparatus and the second base station via the first base station.

25. The first base station according to claim 24 , wherein the control unit is further configured to monitor the tunnel packets, and control update of configuration of the data bearer and the data radio bearer based on a monitoring result of the tunnel packets.

26. The first base station according to claim 17 , wherein the control unit is further configured to request establishment of the data bearer and the data radio bearer in order to use the second cell for transferring user data regarding the mobile station when a predetermined condition is satisfied.

27. The first base station according to claim 26 , wherein the predetermined condition relates to at least one of bearer priority, a delay amount allowed to the user data, a load of the second base station, a positional relation of the mobile station and the second base station, and mobility of the mobile station.

28. The first base station according to claim 17 , wherein the control unit is further configured to determine which of the first cell and the second cell is used for transferring user data regarding the mobile station, and to request establishment of the data bearer and the data radio bearer in response to determining the use of the second cell.

29. A communication control method in a first base station that operates a first cell, the method comprising:

performing control so as to establish a first signaling bearer with a mobility management apparatus in a core network, establish a second signaling bearer with a second base station that operates a second cell, and so as to establish a signaling radio bearer with a mobile station in the first cell; and

transmitting, to the second base station through the second signaling bearer, configuration information to establish a data bearer and a data radio bearer in the second base station, the data bearer being established between a data transfer apparatus in the core network and the second base station, the data radio bearer being established between the second base station and the mobile station in the second cell; and

transmitting, to the mobility management apparatus through the first signaling bearer, an E-UTRAN Radio Access Bearer (E-RAB) indication including an address and a Tunnel Endpoint Identifier (TEID) of the second base station.

30. The method according to claim 29 , further comprising transmitting an establishment request of the data bearer to the mobility management apparatus through the first signaling bearer.

31. The method according to claim 29 , further comprising transmitting, to the mobile station through the signaling radio bearer, configuration information to establish the data radio bearer in the mobile station.

32. The method according to claim 29 , further comprising:

receiving a utilization status of at least one of the data bearer and the data radio bearer from the second base station; and

controlling update of configuration of the data bearer and the data radio bearer based on the utilization status.

33. The method according to claim 29 , wherein

the data bearer is a tunnel through which tunnel packets encapsulating user data are transferred,

the tunnel packets are transferred between the data transfer apparatus and the second base station via the first base station, and

the method further comprises controlling update of configuration of the data bearer and the data radio bearer based on a monitoring result of the tunnel packets.

34. The method according to claim 29 , further comprising requesting establishment of the data bearer and the data radio bearer in order to use the second cell for transferring user data regarding the mobile station when a predetermined condition is satisfied.

35. The method according to claim 34 , wherein the predetermined condition relates to at least one of bearer priority, a delay amount allowed to the user data, a load of the second base station, a positional relation of the mobile station and the second base station, and mobility of the mobile station.

36. The method according to claim 29 , further comprising:

determining which of the first cell and the second cell is used for transferring user data of the mobile station; and

requesting establishment of the data bearer and the data radio bearer in response to determining the use of the second cell.

37. A non-transitory computer readable medium storing a program for causing a computer to perform a communication control method in a first base station that operates a first cell, wherein

the method includes:

performing control so as to establish a first signaling bearer with a core network, establish a second signaling bearer with a second base station that operates a second cell, and so as to establish a signaling radio bearer with a mobile station in the first cell;

transmitting, to the second base station through the second signaling bearer, configuration information to establish a data bearer and a data radio bearer in the second base station, the data bearer being established between the core network and the second base station, the data radio bearer being established between the second base station and the mobile station in the second cell; and

transmitting, to the mobility management apparatus through the first signaling bearer, an E-UTRAN Radio Access Bearer (E-RAB) indication including an address and a Tunnel Endpoint Identifier (TEID) of the second base station.

38. A Master eNB (MeNB) comprising:

a first transmitter configured to transmit, to a Secondary eNB (SeNB), a first message for requesting the SeNB to allocate radio resources for an E-UTRAN Radio Access Bearer (E-RAB);

a first receiver configured to receive a first response for the first message;

a second transmitter configured to transmit, to a User Equipment (UE), a second message related to a Radio Resource Control (RRC) Connection Reconfiguration after the first response is received;

a second receiver configured to receive a second response for the second message; and

a third transmitter configured to transmit, to a Mobility Management Entity (MME), a third message including an address and a Tunnel Endpoint Identifier (TEID) of the SeNB after the second response is received.

39. The MeNB according to claim 38 , wherein

an SI-MME interface for the UE is terminated in the MeNB, and

an SI-U interface for the UE is terminated in the SeNB.

40. The MeNB according to claim 39 , wherein

the SI-MME interface is used for Control Plane and

the SI-U interface is used for User Plane.

41. The MeNB according to claim 39 , wherein the SI-MME interface and the SI-U interface are used simultaneously.

42. A communication control method in a Master eNB (MeNB), the method comprising:

transmitting, to a Secondary eNB (SeNB), a first message for requesting the SeNB to allocate radio resources for an E-UTRAN Radio Access Bearer (E-RAB);

receiving a first response for the first message;

transmitting, to a User Equipment (UE), a second message related to a Radio Resource Control (RRC) Connection Reconfiguration after the first response is received;

receiving a second response for the second message; and

transmitting, to a Mobility Management Entity (MME), a third message including an address and a Tunnel Endpoint Identifier (TEID) of the SeNB after the second response is received.

43. The method according to claim 42 , wherein

an S1-MME interface for the UE is terminated in the MeNB, and

the S1-U interface is used for User Plane.

44. The MeNB according to claim 43 , wherein

the S1-MME interface is used for Control Plane and

the S1-U interface is used for User Plane.

45. The MeNB according to claim 43 , wherein

the S1-MME interface and the S1-U interface are used simultaneously.

46. A Master eNB (MeNB) comprising:

a transmission interface configured to transmit, to a Secondary eNB (SeNB), a first message for requesting the SeNB to allocate radio resources for an E-UTRAN Radio Access Bearer (E-RAB); and

a reception interface configured to receive a first response for the first message;

wherein the transmission interface is configured to transmit, to a User Equipment (UE), a second message related to a Radio Resource Control (RRC) Connection Reconfiguration after the first response is received,

wherein the reception interface is configured to receive a second response for the second message, and

wherein the transmission interface is configured to transmit, to a Mobility Management Entity (MME), a third message including an address and a Tunnel Endpoint Identifier (TEID) of the SeNB after the second response is received.

47. The Master eNB (MeNB) according to claim 46 , wherein the transmission interface comprises a first transmitter configured to transmit, to the SeNB, the first message.

48. The Master eNB (MeNB) according to claim 47 , wherein the transmission interface comprises a second transmitter configured to transmit, to the UE, the second message.

49. The Master eNB (MeNB) according to claim 48 , wherein the transmission interface comprises a third transmitter configured to transmit, to the MME, the third message.

50. The Master eNB (MeNB) according to claim 46 , wherein the reception interface comprises a first receiver configured to receive the first response for the first message.

51. The Master eNB (MeNB) according to claim 50 , wherein the reception interface comprises a second receiver configured to receive the second response for the second message.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2015
From: AMINAKA, HIROAKI; FUTAKI, HISASHI
To: NEC CORPORATION
Reel/Frame 035311/0620 →
Priority Claims (1)
JP 2012-223176 · Oct 5, 2012 · national
Continuity (1)
Related Publication 20150282238A1 · Oct 1, 2015