Abstract:
An electronic device is provided and includes a housing, an antenna module, a wireless communication circuit, a processor, and a memory. The memory stores a number of measurements and a threshold. The number of measurements is defined for measuring, by using a directional beam, a strength of a plurality of beams having different directions and generated by at least one external electronic device. The threshold is defined for changing a beam pair link for communication with the external electronic device. The memory stores instructions that cause, when executed, the processor to measure, based on the number of measurements, a strength of a first beam generated by a first external electronic device by using a first directional beam formed in a first direction through the antenna module, to measure, based on the number of measurements, a strength of a second beam generated by at least one of the first external electronic device or a second external electronic device by using a second directional beam formed in a second direction different from the first direction through the antenna module, and to adjust at least one of the stored number of measurements or the stored threshold based on at least the measured strengths of the first and second beams.
Abstract:
The disclosure relates to a 5G or pre-5G communication system for supporting a higher data transfer rate after a 4G communication system, such as LTE. A method for a terminal is provided. The method includes receiving bandwidth information from a base station, generating resource block (RB) index mapping information based on the bandwidth information and subcarrier interval information, receiving RB indexing information indicating resource information from the base station, and identifying the location of the resource information based on the RB indexing information, the subcarrier interval of the resource information, and the RB index mapping information, and a terminal performing the method. Furthermore, the disclosure may provide a method for a base station to operate with the terminal and a base station operating with the terminal.
Abstract:
A method for operating communication of an electronic device is provided, which includes determining whether a network is in a congestion state, and changing a communication operation state if the network is in the congestion state.
Abstract:
Provided are a method and an electronic device for performing an authentication on the basis of biometrics. The electronic device may acquire sensing data by sensing a target to be authenticated. The electronic device may calculate feature information from the sensing data. The electronic device may determine whether the calculated feature information and stored registered information match each other by using a dynamic matching scheme in which matching between the feature information and the registered information is variably performed according to a state of the electronic device. When the feature information and the registered information match each other on the basis of a result of the determination, the electronic device may generate an event for authentication success.
Abstract:
Disclosed herein are a method and apparatus for managing a display mode. Input of a display mode is detected and the page is displayed in accordance with the input display mode. The page is requested from a server such that the display mode is sent in the request.
Abstract:
A method for combining a plurality of images into a synthesis image and an electronic device implementing the same are provided. The image synthesis method of the present disclosure includes acquiring coordinates of an object in a source image; extracting a target image from the source image based on the coordinates such that the target image contains the object; and displaying the target image in a section of a frame mapped to the source image.
Abstract:
A mobile device user interface method activates a camera module to support a video chat function and acquires an image of a target object using the camera module. In response to detecting a face in the captured image, the facial image data is analyzed to identify an emotional characteristic of the face by identifying a facial feature and comparing the identified feature with a predetermined feature associated with an emotion. The identified emotional characteristic is compared with a corresponding emotional characteristic of previously acquired facial image data of the target object. In response to the comparison, an emotion indicative image is generated and the generated emotion indicative image is transmitted to a destination terminal used in the video chat.