Abstract:
A method generates an authentication key to be used in an authentication algorithm at position at which a mobile station's subscriber is located. First, when there is a request to create the authentication key by a customer service center (CSC), at an authentication center module (ACM), a first type of parameters are issued and transmitted to a mobile station (MS). At the MS, a reference key to be used in creating the authentication key is then obtained on the basis of the first type of parameters to send the reference key to the ACM. A second type of parameter is derived by using the first type of parameters when the reference key is received from the MS and then transmitted to the MS at the ACM. At the MS, the authentication key is generated by using the first type of parameters, the second type of parameter and the reference key and a key generation complete message is transferred to the ACM. In response to the key generation complete message from the MS, at the ACM, the authentication key is generated by using the reference key from the MS, one of the first type of parameters and the second type of parameter and a key generation complete message is transferred to the CSC to allow the MS to be activated so that the MS's subscriber can use a communications service provided by a mobile communications system.
Abstract:
There is provided a multilayer type inductor, including: an inductor main body; a coil part having conductive circuits and conductive vias formed in the inductor main body; and external electrodes formed on both ends of the inductor main body, wherein in the inductor main body, at least parts around the conductive circuits and the conductive vias are formed of a ferrite material or a non-magnetic material.
Abstract:
A rechargeable battery having an electrode assembly formed by depositing/spiral-winding an positive electrode and a negative electrode on respective surfaces of a separator; a can including a pipe having a side seam portion to enclose the electrode assembly and a bottom plate bonded to a first opening of the pipe by a bottom seam portion to close and seal the first opening and facing an end portion of the electrode assembly; and a cap assembly bonded to a second opening of the pipe formed at the other side of the bottom plate to close and seal the second opening.
Abstract:
Provided is a method for executing a minimization drive test (MDT) carried out by a terminal in a wireless communication system. The method comprises: receiving a logged measurement setting; logging an MDT measurement and a measurement result on the basis of the logged measurement setting; and reporting the whole or a part of the logged measurement result to a network. The logged measurement setting includes logging termination time information for indicating the termination time of the MDT measurement or the measurement result logging, wherein the MDT measurement and the measurement result is logged by the time indicated by the logging termination time information.
Abstract:
In one embodiment, the semiconductor device includes a memory array and a control architecture configured to control reading data from and writing data to the memory array. The control architecture is configured to receive data and a codeword location in the memory array, select one or more data units in the received data based on a data mask, read a codeword currently stored at the codeword location in the memory array, error correct the read codeword to generate a corrected read codeword, form a new codeword from the selected data units of the received data and data units in the corrected read codeword that do not correspond to the selected data units, and write the new codeword to the memory array.
Abstract:
An operation method performed by user equipment in a wireless communication system is provided. The method includes: determining whether to switch a Discontinuous Reception (DRX) state; switching to a new DRX state and operating in the new DRX state, if it is determined to switch to the DRX state; and reporting the switch to the new DRX state to a network. The new DRX state is based on a new DRX cycle comprising on-duration for which a downlink channel is monitored and off-duration for which the downlink channel is not monitored.
Abstract:
Disclosed herein is a method for processing signals by a wireless node in a wireless communication system. The method for processing the signal includes configuring a specific subframe for communicating with a network node, starting a timer if a problem of a connection with the network node is detected, and releasing the configured specific subframe if the timer expires.
Abstract:
A method for performing mobility by a user equipment (UE) in a wireless communication system is provided. The method includes: receiving Physical layer Cell Identity (PCI) split information from a network, the PCI split information indicating a predetermined set of at least one PCI reserved for a predetermined cell type; receiving system information from at least one candidate cell, the system information comprising a PCI for each cell; measuring the at least one candidate cell; determining whether to apply the PCI split information for selecting a target cell; selecting the target cell; and performing the mobility to the target cell. If it is determined that the PCI split information is applied, the step of selecting the target cell includes: excluding at least one cell has a PCI included in the predetermined set; and selecting the target cell among at least one remaining cell.
Abstract:
Disclosed is a method for receiving, by a terminal, a paging message in a wireless communication system. A paging message reception method according to the present invention comprises receiving a paging message which includes task information from a base station, and performing at least one task among the initiation of a machine type communication (MTC) function, interruption of a machine type communication (MTC) function and a measurement report according to the task information included in the received paging message.
Abstract:
Methods and apparatus for managing multi-streaming contents and for controlling of changing media players (media renderers) during playback of the multi-streaming contents are disclosed. An exemplary of the method of controlling for changing a media player from a first player to a second player, in a control device is disclosed. The method can include receiving multi-streaming capability from the second player, the multi-streaming capability including information about at least one of multi-streaming contents performable in the second player. The method can also include receiving streaming content information and playing status information from the first player, wherein the playing status information includes playing time information of streaming content being performed at the first player. The method can also include determining streaming content desired to be performed at the second player by comparing the multi-streaming capability of the second player with streaming content information of the first player. The method can also include generating current playing information of the streaming content that is determined to be performed at the second player, based on the playing time information. The method can also include transmitting the current playing information of the streaming content to a media server which is able to communicate with the second player.