Abstract:
The present disclosure relates to handover (HO) of a user equipment (UE), which consumes a quality of service (QoS) flow that is associated with multiple QoS profiles. The disclosure proposes a network entity for supporting HO of the UE, and proposes a second network entity that is the target of HO of the UE. The network entity is configured to: obtain multiple QoS profiles associated with a QoS flow; obtain QoS capability information indicating whether the second network entity supports more than one QoS profile and/or whether a first network entity supports more than one QoS profile; and provide at least one message to the second network entity, wherein the at least one message includes at least one QoS profile according to the QoS capability information.
Abstract:
The present disclosure relates to handover (HO) of a user equipment (UE), which consumes a quality of service (QoS) flow that is associated with multiple QoS profiles. The disclosure proposes a network entity for supporting HO of the UE, and proposes a second network entity that is the target of HO of the UE. The network entity is configured to: obtain multiple QoS profiles associated with a QoS flow; obtain QoS capability information indicating whether the second network entity supports more than one QoS profile and/or whether a first network entity supports more than one QoS profile; and provide at least one message to the second network entity, wherein the at least one message includes at least one QoS profile according to the QoS capability information.
Abstract:
The present disclosure relates to handover (HO) of a user equipment (UE), which consumes a quality of service (QoS) flow that is associated with multiple QoS profiles. The disclosure proposes a network entity for supporting HO of the UE, and proposes a second network entity that is the target of HO of the UE. The network entity is configured to: obtain multiple QoS profiles associated with a QoS flow; obtain QoS capability information indicating whether the second network entity supports more than one QoS profile and/or whether a first network entity supports more than one QoS profile; and provide at least one message to the second network entity, wherein the at least one message includes at least one QoS profile according to the QoS capability information.
Abstract:
A communication method applicable to different scenarios of interworking between communications systems includes determining, by a session management network element, a first data channel in a first system, where the first data channel is a data channel to be synchronized with a terminal device; and synchronizing, by the session management network element in an interworking procedure for the terminal device from the first system to a second system, at least one of the first data channel or a second data channel that is in the second system and that corresponds to the first data channel.
Abstract:
The present embodiments disclose a method and a device for controlling binding of a data flow to a bearer. The method includes receiving, by a policy and charging enforcement function (PCEF) device, indication information and an identifier of a policy and charging control (PCC) rule from a policy and charging rules function (PCRF) device and binding, by the PCEF device to a target bearer according to the indication information, a data flow indicated by an identifier of the data flow in the PCC rule indicated by the identifier of the PCC rule.
Abstract:
A method for providing a local traffic shortcut (LTS) in a packet-oriented mobile communication network comprising the steps of: providing a network node with traffic instance identification data (TIID) wherein the network node stores the TIID with a node ID of the network node as an entry in an LTS-database; querying by the network node the LTS-database of the network for entries comprising the same TIID to identify at least one network node for performing a local traffic shortcut (LTS); and establishing an LTS-tunnel with the identified network node.