Abstract:
Provided is a method for enabling a terminal to handle traffic in a wireless communications system. The method includes the steps of: receiving traffic steering information from a first access network, the traffic steering information containing a first traffic steering rule prescribed by the first access network; evaluating the traffic steering based on at least one of the first traffic steering rule and a second traffic steering rule; and performing the traffic steering between the first access network and a second access network based on the result of the evaluation of the traffic steering.
Abstract:
Provided is a method for communicating carried out by a terminal in a wireless communication system supporting a multiple access network. The method comprises receiving a traffic routing configuration from a first access network, wherein the traffic routing configuration involves specifying traffic routing criteria, searching a second access network, determining whether a second access network entity discovered by the search satisfies the traffic routing criteria, and processing traffic on the first access network through the second access network entity when the traffic routing criteria are satisfied.
Abstract:
There is disclosed a mobile terminal including a display unit, a first film having one surface coated with a first adhesive material, the surface coupled to a back surface of the display unit by the first adhesive material, and a front case having a second adhesive material disposed on one surface thereof, the surface coupled to the other surface of the first film by the second adhesive material, wherein an adhesive strength of the first adhesive material is smaller than an adhesive strength of the second adhesive material, such that the back surface of the mobile terminal may be attached to the case to prevent the bezel from increasing.
Abstract:
Provided are a method for a distributed unit (DU) of a base station (BS) to broadcast system information in a wireless communication system, and a device supporting the same. The method may include: receiving system information owned by a central unit (CU) of the BS from the CU of the BS; receiving a request for the system information from a user equipment (UE); receiving a message of a command to broadcast the system information from the CU of the BS; and broadcasting the requested system information.
Abstract:
The present invention provides a mobile terminal having a flexible display. The present invention may provide a mobile terminal comprising: a first frame; a second frame movably coupled to the first frame and configured to move in a first direction with regard to the first frame; a third frame movably coupled to the second frame and configured to move in the first direction with regard to the second frame; a flexible display portion comprising a first area disposed on the front surface of the mobile terminal and coupled to the first frame, a second area disposed on the back surface of the mobile terminal and coupled to the third frame, and a third area extending between the first and second areas, the third area being wound around the second frame and selectively disposed on the front surface of the mobile terminal or on the back surface of the mobile terminal according to the direction of movement of the second frame; a driving portion configured to move the second frame in the first direction with regard to the first frame and to move the third frame in the first direction with regard to the second frame.
Abstract:
Provided are a method and a device for receiving information indicating the type of a signaling radio bearer (SRB) in a wireless communication system. A user equipment (UE): receives a first radio resource control (RRC) message including information indicating the type of SRB on which a second RRC message, which is a message corresponding to the first RRC message, is to be transmitted; and transmits the second RRC message via the type of SRB indicated by the information indicating the type of SRB. Accordingly, the type of bearer on which a first message is received and the type of bearer on which a second message is transmitted in a single RRC procedure may be identical or mutually different.
Abstract:
A method and apparatus for determining a priority of a packet based on a reliability level and/or congestion level in a wireless communication system is provided. A user equipment (UE) receives information on a reliability level and/or a congestion level from a network, generates a first packet and a second packet, determines a priority of the first packet and/or a priority of the second packet when a condition related to the reliability level and/or the congestion level of the first packet and/or the second packet is met, and transmits at least one of the first packet and/or the second packet.
Abstract:
Provided is a method for declaring a radio link failure (RLF) by a radio resource control (RRC) layer of a user equipment (UE). The method may include: receiving information on failure of beam recovery, from a lower layer of the UE; receiving at least one out-of-sync (OOS) signal, from the lower layer of the UE; and when a number of OOS signals which is received after receiving the information on failure of beam recovery satisfies a threshold value, declaring the RLF.
Abstract:
Disclosed are a method for transmitting an MBMS interest indication message and a device supporting same. A method for transmitting an MBMS interest indication message, according to an embodiment of the present invention, comprises the steps of: deciding a coverage enhancement (CE) level of a terminal in a wireless communication system; receiving CE level information of an MBMS service of interest; comparing the decided CE level of the terminal and the received CE level information of the MBMS service and thus determining whether or not the MBMS service can be received; and, if it is determined that the MBMS service can be received, transmitting to a base station an MBMS interest indication message comprising information about an MBMS frequency of interest or an MBMS service of interest.
Abstract:
A user equipment (UE) receives, from a network, a semi-persistent scheduling (SPS) configuration and a physical uplink control channel (PUCCH) resource configuration. The PUCCH resource configuration may be included in the SPS configuration. When a change of an SPS operation is required, the user equipment transmits an SPS change request to the network and receives, from the network, an SPS resource grant activated according to the SPS change request. The user equipment changes allocation of a PUCCH resource allocated according to the PUCCH resource configuration, on the basis of the received SPS resource grant. For example, a timing at which or a period in which the PUCCH resource is allocated can be changed.