Abstract:
A method of a terminal, includes: receiving first DL BWP configuration information comprising an ID of a first DL BWP; receiving first UL BWP configuration information comprising an ID of a first UL BWP; receiving, from the base station, second DL BWP configuration information comprising an ID of a second DL BWP and an ID of a second UL BWP; and recognizing, through the ID of the second UL BWP, that the second DL BWP configuration information is information for DL-UL configuration of the terminal, wherein, in a first slot, when the first DL BWP and the first UL BWP are temporally separated from each other, DL communication and UL communication are not simultaneously performed, by the terminal, with the base station, and wherein, in a second slot, the DL communication and the UL communication are simultaneously performed with a base station based on the second DL BWP configuration information.
Abstract:
An electronic device and method are provided for displaying information in the electronic device. The electronic device includes a display; and a processor configured to display an application (App) bar including at least one object through a first area of the display, display an execution screen through a second area of the display, and change at least one of the displayed App bar and the displayed execution screen, in response to a first user input received through the first area.
Abstract:
According to various example embodiments, an electronic device including: a housing; a conductive member formed as a part of the housing or disposed in the housing as at least a part of the housing; a communication circuit electrically connected to a first region of the conductive member; a ground electrically connected to a second region of the conductive member spaced from the first region of the conductive member; a tunable circuit interposed in an electric connection path electrically connected with the ground in a third region of the conductive member, the third region being located between the first region and the second region of the conductive member; and at least one processor configured to generate a control signal based on a current mode of the electronic device and to provide the control signal to the tunable circuit.
Abstract:
An electronic device and method are provided. The electronic device includes a display, a processor electrically connected with the display, and a memory electrically connected with the processor. The memory stores instructions that when executed cause the processor to display a plurality of objects for executing at least one application, wherein each of the plurality of objects has a second form corresponding to a first form of the display and has at least a part thereof overlapping with another object. The instructions, when executed, cause the processor to display an execution screen of an application corresponding to an object which is selected from among the plurality of objects in response to an input.
Abstract:
The present disclosure relates to a communication technique that merges IoT technology with a 5G communication system for supporting higher data transmission rates than 4G systems, and a system for same. The present disclosure may be applied to intelligent services (for example, smart homes, smart buildings, smart cities, smart cars or connected cars, healthcare, digital education, retail business, security and safety-related services, etc.) on the basis of 5G communication technology and IoT-related technology. In addition, the present disclosure relates to a method and device for transmitting a signal through a plurality of slots in a wireless communication system.
Abstract:
A mobile electronic device and navigation method thereof. An electronic device of the present disclosure includes a communication module, a camera module, a sensor module, a driving module, a memory, and a processor that is functionally connected to the communication module, the camera module, the sensor module, the driving module, and the memory, the processor determining at least one service and a goal location of the electronic device for providing the at least one service, planning a path towards the goal location, and controlling the electronic device to move along the path. However, other embodiments are possible as well.
Abstract:
An electronic device includes a camera module including image acquiring circuitry and at least one lens; a display configured to display an image acquired through the camera module; a processor electrically connected to the camera module and the display; and a memory electrically connected to the processor, wherein the memory stores instructions which, when executed, cause the processor to provide at least a portion of at least one image acquired through the camera module to the first application in response to a camera service request of a first application and to distribute the at least one image to the first application and the second application, when the processor receives a camera service request from a second application while the processor provides the at least a partial image to the first application.
Abstract:
The present disclosure relates to a communication technique for converging IoT technology with 5G communication systems for supporting a higher data transfer rate beyond 4G systems; and a system therefor. The present disclosure may be applied to intelligent services (for example, smart homes, smart buildings, smart cities, smart cars or connected cars, healthcare, digital education, retail businesses, security- and safety-related services, etc.) on the basis of 5G communication technology and IoT-related technology. In addition, the present disclosure relates to a method and a device for physical uplink control channel (PUCCH) transmission/reception in a wireless communication system.
Abstract:
An unmanned aerial vehicle (UAV) may include: a flight body; a camera installed on the flight body; a sensor module mounted inside the flight body to sense nearby surroundings; a wireless communication module mounted inside the flight body to wirelessly communicate with an external communication device; a processor mounted inside the flight body and electrically connected with the camera, the sensor module, and the wireless communication module; and a memory electrically connected with the processor. The memory may store instructions that, when the unmanned aerial vehicle is in flight, cause the processor to: identify a first geofence region; broadcast flight information on a periodic basis; receive flight information from a second unmanned aerial vehicle in flight; determine whether there is an overlap between the first geofence region and a second geofence region of the second unmanned aerial vehicle; and if so, reset the first geofence region so that the first geofence region does not overlap with the second geofence region.
Abstract:
A wireless communication method and an electronic device are provided. The electronic device includes a transmission module for transmitting a signal to a Circuit Switching (CS) network or a signal to a Packet Switching (PS) network; a first reception module and a second reception module for receiving a signal from the CS network or the PS network; and a communication control module for controlling the transmission module, the first reception module, and the second reception module, wherein, when a signal of the PS network is received through at least one of the first reception module and the second reception module, the communication control module at least temporarily receives a signal received from the CS network in preference to the signal received from the PS network through at least one of the first reception module and the second reception module.