Abstract:
The disclosure relates to a fifth generation (5G) or sixth generation (6G) communication system for supporting a higher data transmission rate. A method performed by a user equipment (UE) in a wireless communication system is provided. The method includes receiving, from a base station, configuration information associated with a wake-up signal (WUS) for a discontinuous reception (DRX) and monitoring the WUS within an occasion for the WUS based on the configuration information, while a group including the UE is in a DRX mode, wherein the WUS includes information on at least one sub-group associated with the WUS among the group.
Abstract:
The disclosure relates to a 5th generation (5G) or 6th generation (6G) communication system for supporting a higher data transmission rate. A method performed by a terminal is provided. The method includes receiving, by the terminal from a base station, channel state information (CSI) report configuration information including a configuration on a CSI report for a network energy saving, a power offset for the CSI report for the network energy saving being included in the configuration on the CSI report for the network energy saving, obtaining, by the terminal, a channel quality indicator (CQI) based on the power offset, and transmitting, by the terminal to the base station, a CSI report including the CQI.
Abstract:
The disclosure relates to a fifth generation (5G) or sixth generation (6G) communication system for supporting higher data rates. Disclosed is a method performed by a terminal in a wireless communication system, including receiving downlink control information (DCI) from a base station, identifying whether the DCI includes a dynamic waveform indicator, and in case that the DCI includes a dynamic waveform indicator, transmitting, to the base station, an uplink signal through a physical uplink shared channel (PUSCH) based on an uplink waveform indicated by the dynamic waveform indicator.
Abstract:
An electronic apparatus is provided. The electronic apparatus may include a communication interface; and a processor configured to: control the communication interface to output an audio content signal to a sound input/output device including a speaker and a microphone; based on receiving a sound signal collected via the microphone from the sound input/output device via the communication interface, identify whether the sound signal includes a scene noise signal corresponding to a regular noise generated in a location in which the sound input/output device is located or an event noise signal corresponding to an irregular noise generated in the location in which the sound input/output device is located; based on identifying that the sound signal includes the scene noise signal, perform noise cancelling for the sound signal; and based on identifying that the sound signal includes the event noise signal, control the output of the audio content signal
Abstract:
The disclosure relates to a voice recognition apparatus for analyzing a user input based on content and generating and outputting an answer and an operation method thereof, the operation method including receiving an audio signal and performing voice recognition on the audio signal; acquiring content information of content being executed; analyzing a user input based on the content information from a voice recognized by performing the voice recognition; generating an answer based on the analyzed user input and the content information; and outputting the answer.
Abstract:
Disclosed is a method of extracting and using a semantic entity from a text message by an electronic device. The method includes: recognizing a text-based input; extracting a semantic entity from the text-based input; and providing the extracted semantic entity through an application in response to the application having a semantic setting that corresponds to the extracted semantic entity.
Abstract:
The disclosure relates to a fifth generation (5G) or sixth generation (6G) communication system for supporting a higher data transmission rate. A method performed by a UE includes receiving, from a BS, configuration information associated with a WUS, monitoring the WUS based on the configuration information, in case that the WUS is received from the BS, determining whether the detected WUS triggers activation of an MR, and determining whether to transmit an uplink signal based on whether the detected WUS triggers the activation of the MR.
Abstract:
The disclosure relates to a 5G or 6G communication system for supporting a higher data transmission rate. A method performed by a user equipment (UE) in a communication system includes obtaining one or more configurations for a fixed frame period (FFP) and an offset associated with a frame-based channel access, identifying a configuration for the FFP and the offset among the one or more configurations, identifying idle duration corresponding to the FFP associated with the configuration, and transmitting a sidelink channel in consideration of the idle duration.
Abstract:
An apparatus includes a memory configured to store data, and a processor. The processor configured to determine whether an access to the data is a local memory access; determine, based on a result of the determination of whether the access to the data is the local memory access, whether a page fault of the access occurred; determine, based on a result of the determination of whether the page fault occurred, whether the access is a remote access outside a socket; and perform, based on a result of the determination of whether the access is the remote access, the access to the data by copying the data onto a local memory.
Abstract:
A method of providing login information may include sending, from a service web page executed on a browser, a login request to an authentication web page executed on the browser, executing, by the authentication web page, a single sign on (SSO) agent in an electronic device, sending, by the authentication web page, a request for authentication information of a user to the SSO agent, generating and transmitting, by the SSO agent, a random number to the authentication web page, generating and transmitting an encrypted eigenvalue on an authentication web server based on the random number to the SSO agent, calling, by the SSO agent, an authentication application programming interface (API) server, and transmitting the eigenvalue, validating the eigenvalue on the authentication API server, and receiving, by the SSO agent, a result of the validating from the authentication API server, and transmitting the authentication information to the authentication web server.