Abstract:
An electronic device may include a display, a camera, a communication circuitry, and a processor, wherein the processor may be configured to: control to transmit an image obtained through the camera to an external device through the communication circuitry, receive an AR image including at least one object from the external device through the communication circuitry and display same through the display, recognize a target object from among the at least one object, and map one of peripheral devices found on a data communication link through the communication circuitry to a target device corresponding to the recognized target object. Various embodiments are possible.
Abstract:
An electronic device according to various embodiments may comprise: at least one wireless communication circuit; a touch screen display; a processor operatively connected to the at least one wireless communication circuit and the touch screen display; and a memory operatively connected to the processor, wherein the memory stores instructions that, when executed, cause the processor to: receive first information on a first external electronic device and a second external electronic device through the at least one wireless communication circuit; determine a location and/or a direction of the first external electronic device and a location and/or a direction of the second external electronic device at least partly on the basis of a signal acquired through the at least one wireless communication circuit and/or second information received through the at least one wireless communication circuit; provide the touch screen display with a graphical user interface (GUI) indicating the first external electronic device and the second external electronic device, at least partly on the basis of the determined location and/or the determined direction; receive, through the touch screen display, a gesture input for selection of the first external electronic device and the second external electronic device; and transmit, through the wireless communication circuit, third information related to an operation of using the first external electronic device and the second external electronic device. Various embodiments are possible.
Abstract:
Various embodiments of the present invention disclose a spatial reuse method and apparatus in a wireless local area network (WLAN) system. According to various embodiments of the present invention, an electronic device comprises a communication circuit for wireless communication with at least one external device and a processor operatively connected to the communication circuit, wherein the processor may determine an allowable interference level for spatial reuse in association with an adjacent basic service set (BSS) in a network environment where a plurality of electronic devices operate, determine a configuration to be used during uplink transmission by at least one mobile device connected to the electronic device on the basis of the adjacent BBS allowing the determined interference level, and transmit a trigger frame including the determined configuration to the mobile device by using the communication circuit. Various embodiments are possible.
Abstract:
Disclosed are a method and an apparatus for reducing current consumption between proximity electronic devices in a NAN based low-power near field communication network. An electronic device may include a processor configured to: broadcast a first signal notifying that the electronic device can operate as a first proxy server, receive a first proxy client registration request from a first external electronic device, transmit a first proxy client registration response, receive a fourth signal notifying that a second external electronic device can operate as a second proxy server, transmit a second proxy client registration request to the second external electronic device, receive a second proxy client registration response from the second external electronic device, and operate the electronic device as a first proxy client of the second external electronic device in parallel with operating the electronic device as the first proxy server of the first external electronic device.
Abstract:
An electronic device includes: a UI; a wireless communication circuit configured to wirelessly communicate with an external electronic device by using a short-range wireless communication protocol; a processor; and a memory. The memory stores instructions, which when executed, cause the processor to receive first data from the external electronic device at a first time through a wireless communication channel by using the wireless communication circuit, receive second data from the external electronic device at a second time after the first time through the wireless communication channel by using the wireless communication circuit, compare a first reception state related to the first data and a second reception state related to the second data, and transmit, to the external electronic device, a request for change from a first mode to a second mode by using the wireless communication circuit, based on a result of the comparing.
Abstract:
Disclosed is an electronic device, including a housing, a first communication circuit disposed in the housing and configured to support omnidirectional wireless communication, a second communication circuit disposed in the housing and configured to support directional wireless communication using beamforming, a processor disposed in the housing and operatively coupled to the first communication circuit and the second communication circuit, and a memory disposed in the housing and operatively coupled to the processor. The processor may be configured to receive at least one first radio signal through a communication channel from an external device capable of supporting the omnidirectional wireless communication and the directional wireless communication using the first communication circuit, determine a state of the communication channel based on at least part of the at least one first radio signal, and activate the second communication circuit based on at least part of the determined state of the communication channel wherein the second communication circuit is configured to receive a second radio signal from the external device.
Abstract:
Disclosed is a method for controlling an electronic device, including switching an electronic document from a first electronic document to a second electronic document, receiving an input corresponding to an arbitrary position of the display, determining one of the first electronic document and the second electronic document as corresponding to the input; and selecting an object corresponding to the arbitrary position where the input is received, based on the determined electronic document.
Abstract:
Disclosed is a method of establishing connection of an electronic device using Wi-Fi P2P to at least one another electronic device, the method includes creating a stability value of the electronic device based on internal state information of the electronic device. The method also includes determining an intent value of the electronic device in response to the stability value. The method also includes receiving an intent value of the at least one another electronic device. The method also includes comparing the intent value of the electronic device with the intent value of the at least one another electronic device. The method also includes forming a Wi-Fi P2P group acting as any one of a group owner (GO) and a group client (GC).
Abstract:
An electronic device may include a communication module, a memory, and a processor operatively connected to the communication module and the memory, wherein the processor is configured to: transmit device information of the electronic device to an external server using the communication module; receive, from the external server, first recommendation information including a list of at least one external device which can be connected to the electronic device through edge computing; request transmission of operation state information from the at least one external device included in the first recommendation information; acquire the operation state information of the at least one external device; and, based on the operation state information of the at least one external device, acquire second recommendation information including a list of at least one external device to be connected through edge computing.
Abstract:
There is provide an electronic device and an operation method of the electronic device. The operation method of the electronic device includes performing discovery of an external electronic device to be connected to the electronic device via short-range wireless communication, receiving performance information of the external electronic device during a group owner (GO) negotiation procedure performed between the external electronic device and the electronic device, the performance information corresponding to whether simultaneous transmission and reception of signals of different frequency bands is supported by the external electronic device, and based on an attribute of an application executed on the electronic device and performance information of the external electronic device, selecting a first frequency band or a first channel for connection to the external electronic device.