Method and apparatus for performing cell specification procedure for network slice-based NR in wireless communication system
A new cell specification procedure can be defined, in order to support more efficiently a network slice function in a new radio (NR) access technology as being a part of a 5G communication system. From a perspective of a radio access network (RAN)-core network (CN) interface, a RAN node can transmit, to a CN node, a first indicator related to the slice support of the RAN node, and receive, from the CN node, a second indicator related to the slice support of the CN node.
1. A method for a radio access network (RAN) node in a wireless communication system, the method comprising:
transmitting, to a core network (CN) node, a RAN-CN interface setup request message including 1) a global identifier (ID) of the RAN node, and 2) information related to slice support of the RAN node;
receiving, from the CN node, a RAN-CN interface setup response message including 1) identification information of the CN node, and 2) information related to slice support of the CN node; and
setting up a RAN-CN interface between the RAN node and the CN node based on the RAN-CN interface setup request message and the RAN-CN interface setup response message.
2. The method of claim 1 , wherein the global ID of the RAN node is a global gNodeB (gNB) ID or a next-generation eNB (ng-eNB) ID.
3. The method of claim 1 , wherein the RAN node is a gNB or an ng-eNB.
4. The method of claim 1 , wherein the CN node is a node supporting a default or dedicated common control plane function (C-CPF) or a node supporting access and mobility management function (AMF).
5. The method of claim 1 , wherein the information related to the slice support corresponds to any one of a “user equipment (UE) Usage Type,” a “dedicated core network ID (DCN-ID),” a “Service Type,” a “domain network name (DNN),” a “multidimensional descriptor (MDD),” a “Tenant ID” or a “Service Descriptor/Slice type.”
6. The method of claim 1 , further comprising performing slice selection for a UE.
7. A radio access network (RAN) node in a wireless communication system, comprising:
at least one transceiver;
at least processor; and
at least one computer memory operably connectable to the at least one processor and storing instructions that, based on being executed by the at least one processor, performs operations comprising:
transmitting, to a core network (CN) node, a RAN-CN interface setup request message including 1) a global identifier (ID) of the RAN node, and 2) information related to slice support of the RAN node;
receiving, from the CN node, a RAN-CN interface setup response message including 1) identification information of the CN node, and 2) information related to slice support of the CN node; and
setting up a RAN-CN interface between the RAN node and the CN node based on the RAN-CN interface setup request message and the RAN-CN interface setup response message.
8. The RAN node of claim 7 , wherein the global ID of the RAN node is a global gNodeB (gNB) ID or a next-generation eNB (ng-eNB) ID.
9. The RAN node of claim 7 , wherein the RAN node is a gNB or an ng-eNB.
10. The RAN node of claim 7 , wherein the CN node is a node supporting a default or dedicated common control plane function (C-CPF) or a node supporting access and mobility management function (AMF).
11. The RAN node of claim 7 , wherein the information related to the slice support corresponds to any one of a “user equipment (UE) Usage Type”, a “dedicated core network ID (DCN-ID)”, a “Service Type”, a “domain network name (DNN)”, a “multidimensional descriptor (MDD)”, a “Tenant ID” or a “Service Descriptor/Slice type”.