Abstract:
Disclosed is an electronic device comprising a communication circuit, a memory, and a processor. The processor may be set to obtain an omnidirectional image, identify at least one face in the omnidirectional image, obtain at least one gaze direction from the at least one face, and generate at least one region of interest of the omnidirectional image on the basis of the at least one gaze direction. Also, various other embodiments specified throughout the present specification may also be possible.
Abstract:
Various embodiments relate to a device and a method for setting a background screen in an electronic device. The electronic device comprises a display, and at least one processor, wherein the processor may: identify a plurality of content to be displayed on the display; identify screen complexity value of each content based on features included in screens of the plurality of content; obtain display information of an object to be displayed above the plurality of content in the display; set an output order of the plurality of content based on the screen complexity value of the plurality of content and the display information of the object; display the object through the display based on the display information of the object; and display the plurality of content under the object based on the output order.
Abstract:
The various embodiments of the present invention disclose an image processing method and system for capturing a refocusable image set. The method comprises of segmenting a field of view into a plurality of grids, determining a sharpness level associated with each of the plurality of grids, identifying one or more regions based on the determined sharpness level of each of the plurality of grids, each region comprising one or more of the plurality of grids and capturing an image associated with each of the identified one or more regions to form the refocusable image set. The method further comprises of detecting a refocusing action on an object, in the field of view, having an associated illumination level and varying the associated illumination level of the object based on the detection.