Abstract:
Embodiments herein disclose methods for handling a data driven model in a wireless communication network. The method includes identifying, by a first electronic device, a common data driven model capability between a capability information of one or more first data driven model and a capability information of one or more second data driven model. The one or more first data driven model is associated with the first electronic device and the one or more second data driven model is associated with the second electronic device. Further, the method includes performing, by the first electronic device, one of: storing the common data driven model capability in the first electronic device on identifying the common data driven model capability, and disabling a data driven model capability in the first electronic device on not identifying the common data driven model capability.
Abstract:
An electronic device is provided. The electronic device is configured to establish a short-range connection with an external device including a second camera, establish a connection for image transmission/reception with a counterpart device, determine a format of image data to be transmitted to the counterpart device, select one of the first camera of the electronic device and the second camera of the external device to acquire an image to be transmitted to the counterpart device, when the first camera is selected, packetize first image data acquired from the first camera according to the format, so as to transmit the packetized first image data to the counterpart device through the communication module, and when the second camera is selected, receive second image data from the external device, and packetize the second image data according to the determined format, so as to transmit the packetized second image data to the counterpart device.
Abstract:
Embodiments herein disclose methods for handling a data driven model in a wireless communication network. The method includes identifying, by a first electronic device, a common data driven model capability between a capability information of one or more first data driven model and a capability information of one or more second data driven model. The one or more first data driven model is associated with the first electronic device and the one or more second data driven model is associated with the second electronic device. Further, the method includes performing, by the first electronic device, one of: storing the common data driven model capability in the first electronic device on identifying the common data driven model capability, and disabling a data driven model capability in the first electronic device on not identifying the common data driven model capability.
Abstract:
An electronic device and an operation method of the electronic device according to various embodiments may include; a communication module comprising communication circuitry configured to transmit and/or receive data using a call channel established via a call connection to an external electronic device; and a processor, wherein the processor is configured to control the electronic device to: transmit a call connection request message to establish a call channel between an external electronic device and the electronic device; receive a response message from the external electronic device; based on capability information of the external electronic device related to the call connection and included in the response message, determine whether to pre-process a content transmitted via the call connection using a transmission filter configured to change a quality of the content; transmit, to the external electronic device, a call connection confirmation message indicating whether to pre-process the content; and control the communication module to complete establishing of the call channel, wherein the connection request message includes capability information of the electronic device related to the filter.
Abstract:
According to one embodiment of the present invention, an electronic device comprises a wireless communication circuit, a memory, and a processor electrically connected to the wireless communication circuit and the memory, wherein the processor can be configured to acquire a plurality of encoded image frames on the basis of at least a part of image data stored in the memory, compare each data size of the plurality of encoded image frames with a threshold value, and change transmission setting of at least one among the plurality of encoded image frames through the wireless communication circuit on the basis of at least a part of the result of the comparison. Additional various embodiments are possible.
Abstract:
A method of generating a medical resonance image and a medical imaging apparatus using the same are provided. The medical imaging apparatus includes a signal controller configured to determine flip angles respectively corresponding to radio frequency (RF) refocusing pulses included in a fast spin-echo (FSE) pulse sequence, based on a pseudo-steady state model of a flip angle schedule. The medical imaging apparatus further includes an RF transmitter configured to apply an RF excitation pulse to an object, and apply the RF refocusing pulses to the object based on the determined flip angles. The medical imaging apparatus further includes an image processor configured to generate a magnetic resonance (MR) image based on an MR signal that is received from the object.
Abstract:
An electronic device and a method of operating the same are provided. The electronic device includes a communication circuit configured to transmit or receive data using a call channel established through a call connection with an external electronic device, and a processor configured to transmit content, which is pre-processed using a first transmission filter, to the external electronic device through the call channel, receive a first real-time control protocol (RTCP) message transmitted by the external electronic device through the call channel, identify a status of the call channel, based on the first RTCP message, determine whether or not to perform an operation of pre-processing the content to be transmitted to the external electronic device using a second transmission filter, transmit a second RTCP message using the second transmission filter to the external electronic device, and perform transmission of the content, based on the second transmission filter.
Abstract:
Various embodiments of the present invention disclose a method and device for an electronic device to provide a multimedia service in an IMS network environment. According to various embodiments of the present invention, an electronic device includes: a wireless communication module; a processor operatively connected with the wireless communication module; and a memory operatively connected with the processor, wherein the memory may store instructions which, when executed, cause the processor to: establish a session for a media service with a counterpart electronic device by using the communication module; transmit a packet including a first message related to the use of a quality service to the counterpart electronic device after the session is established; determine whether the counterpart electronic device can use the quality service on the basis of a second message in a packet received from the counterpart electronic device; enable at least one quality improvement function on the basis of the second message if the counterpart electronic device can use the quality service; and while the media service is being performed, transmit to the counterpart electronic device, a packet having improved quality on the basis of the quality improvement function. Various other embodiments are also possible.
Abstract:
An electronic device is provided. The electronic device includes memory, a camera module, a communication module, and at least one processor operatively connected to the memory, the camera module, and the communication module. The memory, when executed by the at least one processor, cause the electronic device to establish a call connection with a network based on the communication module, identify a first image captured based on the camera module, identify first information associated with a first bitrate corresponding to the first image, based on a communication environment between the network and the electronic device, identify a second image corresponding to the first image output from an artificial intelligence model for down-scaling, trained to receive information associated with a high-resolution image and a bitrate as an input value to output a low-resolution image, by inputting the first image and the first information to the artificial intelligence model, and transmit the second image through the call connection.
Abstract:
An electronic device and an operating method of an electronic device are provided. The electronic device includes a memory storing a first codec and a second codec having lower performance than the first codec, communication circuitry, and a processor. The processor is configured to receive, from a server related to a video call, performance information of external electronic devices participating in the video call, determine whether to perform encoding using the first codec based on the performance information, and control the communication circuitry to transmit, to the server, a first image stream encoded using the first codec and a second image stream encoded using the second codec based on the determination.