IP Library Granted Patent US 11,979,787
Granted Patent B2
US 11,979,787 · App. 18/211,994 · Granted May 7, 2024

Radio access network node, radio terminal, and method therefor

Inventors: Hisashi Futaki (Tokyo, JP); Sadafuku Hayashi (Tokyo, JP)
Assignee: NEC CORPORATION
H04W36/14H04W36/0055
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Quick Facts
Patent No.
US 11,979,787
App. No.
18/211,994
Granted
May 7, 2024
Kind
B2
Abstract

A target RAN node ( 3 ) receives, from a core network ( 5 ), a message requesting a handover of a radio terminal ( 1 ) from a bearer-based network to a bearer-less network. This handover request message includes flow information related to at least one session to be established in the bearer-less network in order to transfer at least one packet flow of the radio terminal ( 1 ). The target RAN node ( 3 ) transmits, to the core network ( 5 ), a handover acknowledge response message containing a transparent container that includes a radio resource configuration information derived from the flow information and is to be forwarded to a source RAN node associated ( 2 ) through the core network ( 5 ). It is thus, for example, possible to appropriately configuring an AS layer of a target RAT in an inter-RAT handover.

Claims (51)

1. A method comprising:

receiving a Handover Request message from a Fifth Generation (5G) core network during a handover of a radio terminal from a source radio access network (RAN) node connected to the 5G core network to a target RAN node connected to the 5G core network, the Handover Request message including list information corresponding to a Protocol Data Unit (PDU) Session,

wherein the list information includes a flow identifier identifying a flow within the PDU Session and a flow Quality of Service (QoS) parameter corresponding to the flow identified by the flow identifier,

wherein the list information includes a PDU Session ID identifying the PDU Session and slice information identifying a network slice corresponding to the PDU Session,

wherein the slice information includes information indicating a service type of the network slice, and

wherein the network slice is a logical network; and

transmitting a Handover Request Acknowledge message to the 5G core network in response to the Handover Request message, the Handover Request Acknowledge message including a Target to Source Transparent Container, and the Target to Source Transparent Container including radio resource configuration information.

2. The method according to claim 1 , wherein the Handover Request message is transmitted from the 5G core network to the target RAN node, and

wherein the Handover Request Acknowledge message is transmitted from the target RAN node to the 5G core network.

3. The method according to claim 1 further comprising:

creating the radio resource configuration information using the list information.

4. The method according to claim 1 , wherein the target RAN node is a node in a 5G system.

5. A method comprising:

transmitting a Handover Request message to a target radio access network (RAN) node during a handover of a radio terminal from a source RAN node connected to a Fifth Generation (5G) core network to the target RAN node connected to the 5G core network, the Handover Request message including list information corresponding to a Protocol Data Unit (PDU) Session,

wherein the list information includes a flow identifier identifying a flow within the PDU Session and a flow Quality of Service (QoS) parameter corresponding to the flow identified by the flow identifier,

wherein the list information includes a PDU Session ID identifying the PDU Session and slice information identifying a network slice corresponding to the PDU Session,

wherein the slice information includes information indicating a service type of the network slice, and

wherein the network slice is a logical network; and

receiving a Handover Request Acknowledge message from the target RAN node in response to the Handover Request message, the Handover Request Acknowledge message including a Target to Source Transparent Container, and the Target to Source Transparent Container including radio resource configuration information.

6. The method according to claim 5 , wherein the Handover Request message is transmitted from the 5G core network to the target RAN node, and

wherein the Handover Request Acknowledge message is transmitted from the target RAN node to the 5G core network.

7. The method according to claim 5 , wherein the radio resource configuration information is created using the list information.

8. The method according to claim 5 , wherein the target RAN node is a node in a 5G system.

9. A node comprising:

a memory; and

a processor,

wherein the processor is configured to:

receive a Handover Request message from a Fifth Generation (5G) core network during a handover of a radio terminal from a source radio access network (RAN) node connected to the 5G core network to a target RAN node connected to the 5G core network, the Handover Request message including list information corresponding to a Protocol Data Unit (PDU) Session,

wherein the list information includes a flow identifier identifying a flow within the PDU Session and a flow Quality of Service (QoS) parameter corresponding to the flow identified by the flow identifier,

wherein the list information includes a PDU Session ID identifying the PDU Session and slice information identifying a network slice corresponding to the PDU Session,

wherein the slice information includes information indicating a service type of the network slice, and

wherein the network slice is a logical network; and

transmit a Handover Request Acknowledge message to the 5G core network in response to the Handover Request message, the Handover Request Acknowledge message including a Target to Source Transparent Container, and the Target to Source Transparent Container including radio resource configuration information.

10. The node according to claim 9 , wherein the Handover Request message is transmitted from the 5G core network to the target RAN node, and

wherein the Handover Request Acknowledge message is transmitted from the target RAN node to the 5G core network.

11. The node according to claim 9 , wherein the processor further configured to create the radio resource configuration information using the list information.

12. The node according to claim 9 , wherein the target RAN node is a node in a 5G system.

13. A node comprising:

a memory; and

a processor,

wherein the processor is configured to:

transmit a Handover Request message to a target radio access network (RAN) node during a handover of a radio terminal from a source RAN node connected to a Fifth Generation (5G) core network to the target RAN node connected to the 5G core network, the Handover Request message including list information corresponding to a Protocol Data Unit (PDU) Session,

wherein the list information includes a flow identifier identifying a flow within the PDU Session and a flow Quality of Service (QoS) parameter corresponding to the flow identified by the flow identifier,

wherein the list information includes a PDU Session ID identifying the PDU Session and slice information identifying a network slice corresponding to the PDU Session,

wherein the slice information includes information indicating a service type of the network slice, and

wherein the network slice is a logical network; and

receive a Handover Request Acknowledge message from the target RAN node in response to the Handover Request message, the Handover Request Acknowledge message including a Target to Source Transparent Container, and the Target to Source Transparent Container including radio resource configuration information.

14. The node according to claim 13 , wherein the Handover Request message is transmitted from the 5G core network to the target RAN node, and

wherein the Handover Request Acknowledge message is transmitted from the target RAN node to the 5G core network.

15. The node according to claim 13 , wherein the radio resource configuration information is created using the list information.

16. The node according to claim 13 , wherein the target RAN node is a node in a 5G system.

Priority Claims (1)
JP 2016-158279 · Aug 10, 2016 · national
Continuity (3)
Continuation 17712279 · Apr 4, 2022
Continuation 16321877
Related Publication 20230337090A1 · Oct 19, 2023
Cited By (1)
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