Abstract:
Electronic devices according to present disclosure may comprise: a communication circuit which supports a plurality of communication links including a first link and a second link through a plurality of frequency bands; and at least one processor, wherein the at least one processor is configured to: distribute data packets to be transmitted at least one of the plurality of communication links, respectively; identify a first transmission rate of the first link and a second transmission rate of the second link; and perform at least one of an adjustment of the transmission rates or an adjustment of the number of distribution of data packets for the first link and the second link so that a difference between transmission times of the data packets distributed to the first link and the second link, respectively, is within a designated time range.
Abstract:
With respect to an electronic device and an electronic device operating method, according to various embodiments, the electronic device comprises: a communication module including a communication circuit and at least one processor, comprising processing circuitry, configured to support short-range wireless communication; and at least one application processor, comprising processing circuitry, electrically connected to the communication module through an interface supporting a plurality of operating modes, wherein at least one processor, individually and/or collectively, can be configured to: select one operating mode from among the plurality of operating modes based on capability information about the external electronic device, received from the external electronic device; and transmit data to the application processor through the selected operating mode and/or receive, through the selected interface, data transmitted by the application processor, and the capability information about the external electronic device can be configured to be received from the external electronic device before completion of the establishment of the short-range wireless communication.
Abstract:
An electronic device includes: a communication module; a memory; and at least one processor operatively connected to the communication module and the memory, wherein the at least one processor is configured to: control the communication module to generate a direct communication group in which an external electronic device operates as a group owner and the electronic device operates as a group client through a Wi-Fi direct connection with the external electronic device, to perform wireless communication; control the communication module to transmit, to the external electronic device, a schedule change request message requesting to change an operation schedule of the direct communication group, based on a change in an operating state, related to wireless communication through the direct communication group, of at least one of the at least one processor and the communication module; receive, through the communication module from the external electronic device, a response message including operation schedule information configured based on the schedule change request message; and control the communication module to perform wireless communication according to the operation schedule information of the response message received from the external electronic device.
Abstract:
The disclosure relates to a device and a method for adjusting a transmission rate in an electronic device. The electronic device includes a memory, a communication circuit, and at least one processor operatively connected to the memory and the communication circuit, wherein the at least one processor when wireless communication with an external electronic device is performed, identifies an expected first power consumption amount of a first transmission rate on the basis of the first transmission rate and a failure rate of data transmission related to the first transmission rate, identifies an expected second power consumption amount of a second transmission rate on the basis of the second transmission rate and a failure rate of data transmission related to the second transmission rate, selects, as a data transmission rate, the first transmission rate or the second transmission rate on the basis of the first power consumption amount and the second power consumption amount, and transmits data to the external electronic device on the basis of the selected data transmission rate.
Abstract:
Various embodiments disclose a method and an apparatus for controlling a network for low latency and low power data communication in a tethered AR system. An electronic device according to various embodiments may include a wireless communication circuit; and a processor operatively connected to the wireless communication circuit, wherein the processor is configured to identify a first Service Period (SP), based on a data amount of a predetermined data path when an Augmented Reality (AR) service with an external device is initiated, identify a transmission interval on the basis of a frame rate of the external device, identify whether a network connected to the electronic device satisfies a predetermined transmission requirement, based on at least the first SP and the transmission interval, determine connection information related to a connection with the eternal device on the basis of a network which satisfies the transmission requirement, and make the connection with the external device on the basis of the connection information. Various embodiments are possible.
Abstract:
An electronic device according to various embodiments comprises: at least one wireless communication circuit configured to transmit and receive wireless signals according to IEEE 802.11 standard; a processor operatively connected to the wireless communication circuit; and a memory operatively connected to the processor, wherein the memory can store instructions allowing, when executed, the processor to: receive a first request message for a tunneled direct link setup (TDLS) session defined by the IEEE 802.11 standard from a first access point (AP) through the wireless communication circuit; determine, on the basis of the first request message, that an external electronic device having requested the TDLS session is connected to a second AP; establish a connection to the second AP through the wireless communication circuit on the basis of the determination; transmit a second request message for the TDLS session to the second AP; and establish the TDLS session with the external electronic device through the second AP on the basis of the reception of a response message to the second request message from the external electronic device. Additional various embodiments are possible.
Abstract:
Various embodiments of the present invention relate to an electronic device for controlling communications. The electronic device may comprise: a housing including a first side and a second side facing the first side; a touch screen display exposed through the first side; a wireless communication unit for generating a directional beam in order to establish a wireless communication channel with an external electronic device; a sensor mounted in the housing; at least one processor mounted in the housing and electrically coupled to the display, the wireless communication unit and the sensor; and a memory mounted in the housing and electrically coupled to the at least one processor. The memory according to the various embodiments of the present invention is, when executed, characterized in that the processor is configured to: perform a first direction search for determining the direction of the directional beam corresponding to a first section, wherein the first section falls within a range corresponding to the direction of the electronic device; detect a change in direction of the electronic device by using the wireless communication unit and the sensor; and in response to the change of direction, perform, at least partially, a second direction search corresponding to a second section on the basis of the detected direction change, wherein the second section falls within a range corresponding to the changed direction of the electronic device, and the second section has a smaller range than that of the first section. Other embodiments are possible.
Abstract:
An apparatus and a method for processing a drag and drop are provided. The apparatus includes a touch screen configured to display a portion of content including an object and a control module configured to identify the object as a draggable object, determine whether a predetermined touch input associated with the identified object is detected, detect whether an intended drop area associated with the identified object exists in a remaining portion of content when the predetermined touch input is detected, and display a drop area indicator corresponding to the intended drop area on the touch screen.
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:
Electronic devices and methods according to various embodiments of the disclosure may comprise or utilize a display of which at least a portion is flexible and a display area exposed to the outside, which is changeable, an antenna module, a communication module for performing wireless local area network (LAN) communication with an access point by using the antenna module, and a processor. Various other embodiments are possible.