Abstract:
Provided is an operating method for acquiring system information which is to be performed by a terminal in a wireless communication system. The method comprises: transmitting, to a serving cell, a system information acquisition failure report message that requests the transmission of compulsory system information; operating a system based on the acquired compulsory system information upon the acquisition of the compulsory system information as a response to the system information acquisition failure report message; and performing a connection recovery upon the failure of the acquisition of the compulsory system information as a response to the system information acquisition failure report message.
Abstract:
There is disclosed a mobile terminal including a curvedly flexible display unit, a case having a case to which the display unit is coupled, wherein the case includes a first case, a second case coupled to the first case to rotate with respect to the first case in a preset range of angles, a hinge shaft provided in the first case, a hinge housing provided in the second case, the hinge housing in which the hinge shaft is disposed, with a cylindrical shape, and a stopper for adjusting a rotation angle between the first case and the second case. The curvature of the mobile terminal may be variable and that it may be convenient to hand-carry the mobile terminal. In addition, the user can change the curvature he or she can feel comfortable. Even when a force is applied to an end of the mobile terminal, the damage on the mobile terminal can be prevented.
Abstract:
A method and apparatus for prohibiting autonomous denial in a wireless communication system is provided. A user equipment (UE) receives a configuration for autonomous denial over a first connection from a network, and prohibits the autonomous denial for UL transmission if the UL transmission corresponds to a specific signal.
Abstract:
Disclosed is a communication method performed by a terminal in a wireless communication system. The method comprises: determining whether a serving cell management condition is satisfied; and managing a cell set including at least one serving cell for the terminal according to the satisfied serving cell management condition.
Abstract:
Provided is a method for evaluating correlation validity between an estimation result and location information performed by a network object in a wireless communication system. The method comprises: obtaining from user equipment the estimation result from a first point in time; obtaining from the user equipment location information from a second point in time; obtaining correlation validity information for determining correlation and evaluating the correlation validity; and performing the correlation validity evaluation on the basis of the correlation for determining whether the location information is highly correlated to the estimation result. When the location information is determined to have a high correlation to the estimation result through the correlation validity evaluation, the location information is used for optimizing network performance. When the location information is determine to have a low correlation to the estimation result through the correlation validity evaluation, the estimation result is used for optimizing network performance.
Abstract:
A method and apparatus for changing a physical cell identity (PCI) of a mobile relay node (MRN) cell in a wireless communication system is provided. When a donor eNodeB (DeNB) changes the PCI of the MRN cell, the DeNB transmits a message indicating a change of the PCI of the MRN cell to an MRN if it is determined that the PCI of the MRN cell collides with the PCI of a DeNB cell or a PCI of neighbor cells. When the MRN changes the PCI of the MRN cell, the MRN transmits a message including the changed PCI of the MRN cell to user equipments (UEs) served by the MRN.
Abstract:
A mobile terminal includes a first frame; a second frame coupled to be movable in a first direction from the first frame, and comprises a third rear unit moving along the back surface of the first frame, and a first roller on the end part in the first direction of the third rear unit; a flexible display having one end fixed to the front surface of the first frame, and covering the first roller; a drive unit moving the second frame in the first direction or moves same in a second direction opposite direction from the first direction; and a connection band covering the end part in the second direction of the third rear unit, has one end thereof connected to the end part in the first direction of the first frame, and has the other end thereof connected to the other end of the flexible display.
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:
One disclosure of the present specification provides a method for supporting early data transmission (EDT) by a base station. The method may comprise a step of receiving a first message from a mobility management entity (MME). A first NAS message may include downlink data. The method may further comprise a step of confirming that there is no additional data other than the downlink data, on the basis of reception of the first NAS message.
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.