Master node, secondary node, and methods therefor
A master node (MN) ( 1 ) controls the MN ( 1 ) to enable, for a radio terminal ( 3 ), dual connectivity using a Master Cell Group (MCG) provided by the MN ( 1 ) and a Secondary Cell Group (SCG) provided by a secondary node (SN) ( 2 ). The MN ( 1 ) sends an indication regarding an MCG failure to the SN ( 2 ). The MN ( 1 ) transmits an RRC message related to recovery of the MCG failure to the radio terminal ( 3 ), via an SCG part of a split signalling radio bearer between the MN ( 1 ) and the radio terminal ( 3 ). This, for example, allows the SN to learn of an occurrence of the MCG failure.
1. A method for a Master node of a dual connectivity with a Secondary node, the method comprising:
communicating with a user terminal using a Master Cell Group (MCG) which is a group of serving cells associated with the Master node;
receiving a first Radio Resource Control (RRC) Transfer message from the Secondary node, the first RRC Transfer message including information indicating a failure on the MCG; and
transmitting a second RRC Transfer message to the Secondary node after receiving the first RRC Transfer message, the second RRC Transfer message including an RRC Reconfiguration message, and further including, in addition to the RRC Reconfiguration message, information indicating to the Secondary node that the RRC Reconfiguration message relates to a recovery of the MCG.
2. The method according to claim 1 , wherein the RRC Reconfiguration message is transmitted from the Secondary node to the user terminal using a Signaling Radio Bearer 3 (SRB3) established between the Secondary node and the user terminal.
3. The method according to claim 1 , wherein the RRC Reconfiguration message and the information included in the second RRC Transfer message containing cause the Secondary node to recognize that the Secondary node is required to send the RRC Reconfiguration message to the user terminal.
4. A method for a Secondary node of a dual connectivity with a Master node, the method comprising:
communicating with a user terminal using an SCG which is a group of serving cells associated with the Secondary node;
transmitting a first RRC Transfer message to the Master node, the first RRC Transfer message including information indicating a failure on an MCG which is a group of serving cells associated with the Master node; and
receiving a second RRC Transfer message from the Master node after transmitting the first RRC Transfer message, the second RRC Transfer message including an RRC Reconfiguration message, and further including, in addition to the RRC Reconfiguration message, information indicating to the Secondary node that the RRC Reconfiguration message relates to a recovery of the MCG.
5. The method according to claim 4 , wherein the RRC Reconfiguration message is transmitted from the Secondary node to the user terminal using a Signaling Radio Bearer 3 (SRB3) established between the Secondary node and the user terminal.
6. The method according to claim 4 , further comprising recognizing, in response to receiving both the RRC Reconfiguration message and the information in the second RRC Transfer message, that the Secondary node is required to send the RRC Reconfiguration message to the user terminal.
7. A Master node of a dual connectivity with a Secondary node, the Master node comprising:
at least one memory; and
at least one processor coupled to the memory and configured to:
communicate with a user terminal using an MCG which is a group of serving cells associated with the Master node;
receive a first RRC Transfer message from the Secondary node, the first RRC Transfer message including information indicating a failure on the MCG; and
transmit a second RRC Transfer message to the Secondary node after receiving the first RRC Transfer message, the second RRC Transfer message including an RRC Reconfiguration message, and further including, in addition to the RRC Reconfiguration message, information indicating to the Secondary node that the RRC Reconfiguration message relates to a recovery of the MCG.
8. The Master node according to claim 7 , wherein the RRC Reconfiguration message is transmitted from the Secondary node to the user terminal using a Signalling Radio Bearer 3 (SRB3) established between the Secondary node and the user terminal.
9. The Master node according to claim 7 , wherein the RRC Reconfiguration message and the information included in the second RRC Transfer message containing cause the Secondary node to recognize that the Secondary node is required to send the RRC Reconfiguration message to the user terminal.
10. A Secondary node of a dual connectivity with a Master node, the Secondary node comprising:
at least one memory; and
at least one processor coupled to the memory and configured to:
communicate with a user terminal using an SCG which is a group of serving cells associated with the Secondary node;
transmit a first RRC Transfer message to the Master node, the first RRC Transfer message including information indicating a failure on an MCG which is a group of serving cells associated with the Master node; and
receive a second RRC Transfer message from the Master node after transmitting the first RRC Transfer message, the second RRC Transfer message including an RRC Reconfiguration message, and further including, in addition to the RRC Reconfiguration message, information indicating to the Secondary node that the RRC Reconfiguration message relates to a recovery of the MCG.
11. The Secondary node according to claim 10 , wherein the RRC Reconfiguration message is transmitted from the Secondary node to the user terminal using a Signaling Radio Bearer 3 (SRB3) established between the Secondary node and the user terminal.
12. The Secondary node according to claim 10 , wherein the at least one processor is configured to recognize, in response to receiving both the RRC Reconfiguration message and the information in the second RRC Transfer message, that the Secondary node is required to send the RRC Reconfiguration message to the user terminal.