Abstract:
An apparatus and a method for performing spherical panorama shooting in an electronic device are provided. The method includes, displaying, if it is determined that the electronic device is positioned in an outdoor environment, a first summary guide corresponding to the outdoor environment, and displaying, if it is determined that the electronic device is positioned in an indoor environment, a second summary guide corresponding to the indoor environment. The first summary guide and the second summary guide are graphic User Interfaces (UI) for informing a spherical panorama shooting progress, and the second summary guide has a number of image shootings that are required for generating a spherical panoramic image, different from the number of image shootings in a case where the first summary guide is displayed.
Abstract:
A method and apparatus for photographing a panoramic image. The method includes detecting a Motion Vector (MV) of a plurality of images captured through a photographing unit, selecting regions to be included in the panoramic image from the plurality of images, based on the MV, and generating the panoramic image including the selected regions.
Abstract:
An electronic device and method for capturing an image are disclosed. The electronic device includes an image sensor configured to capture images, a location sensor configured to detect a location of the electronic device, and a processor. The processor may execute the method, which includes capturing a first image, and detecting a first location where the first image is captured, detecting, by a processor, a second location at which a second image is to be captured and generating guidance information for travel to the second location, and when a present location is within a predefined range of the second location, automatically capturing the second image.
Abstract:
An electronic device for providing map information associated with a space of interest is provided. The electronic device includes a display and a processor configured to display, on the display, at least a portion of a map including at least one node associated with at least one image photographed at a corresponding position of the space of interest and additional information on the at least one image, change, in response to an input or an event, a first image associated with a first node among the at least one node or first additional information on the first image, and display, on the map through the display, at least a portion of the changed first image or at least a portion of the changed first additional information.
Abstract:
Disclosed are an apparatus and a method for display of a screen according to brightness intensity of ambient light. One or more characteristic values configuring display data is set to be higher than a preset color characteristic value when measured brightness intensity of ambient light is higher than preset brightness intensity of ambient light, and one of the set color characteristic values is converted to a contrast characteristic value and is displayed. Therefore, even when brightness intensity of ambient light is high, the user can accurately view a screen.
Abstract:
A three-Dimensional (3D) image conversion apparatus for converting a two-Dimensional (2D) image into a 3D image and a method for controlling the 3D image conversion apparatus are provided. The method includes displaying the 2D image to be converted into the 3D image, receiving a user input designating at least one object included in the 2D image, obtaining boundaries of the at least one object included in the 2D image based on the received user input to identify each of the at least one object, analyzing the 2D image including the at least one object to obtain depth information of each of the at least one object, and arranging the identified each of the at least one object based on the obtained depth information to generate the 3D image.
Abstract:
Disclosed is a method for photographing a panoramic image including the steps of recognizing movement of a corresponding photographing apparatus by comparing a current real-time input image with a previous image through a motion estimation mechanism with exposure compensation, determining a time to photograph each next picture by determining whether movement in a photography direction reaches a preset threshold value, and photographing each next picture by manual or automatic operation at the determined time.
Abstract:
Disclosed is a method for photographing a panoramic image including the steps of recognizing movement of a corresponding photographing apparatus by comparing a current real-time input image with a previous image through a motion estimation mechanism with exposure compensation, determining a time to photograph each next picture by determining whether movement in a photography direction reaches a preset threshold value, and photographing each next picture by manual or automatic operation at the determined time.
Abstract:
An apparatus and a method for displaying images in an electronic device are provided. The electronic device includes a processor that obtains an image and a depth map corresponding to the image, separates the image into one or more areas based on the depth map of the image, applies an effect, which is different from at least one of other areas, to at least one of the areas separated from the image, and connects the areas, to which the different effects have been applied, as a single image, and a display that displays the single image.
Abstract:
Various embodiments of the present disclosure relate to an apparatus and a method for communicating with another electronic device in an electronic device. The electronic device includes: a first communication module configured to support low frequency communication; a second communication module configured to support cellular communication; at least one sensor; at least one processor; and a memory electrically connected with the processor, wherein, when being executed, the memory may store instructions that cause the at least one processor to detect a motion of the electronic device based on the at least one sensor, and to transmit a signal for controlling an activation state regarding the low-frequency communication with another electronic device to the another electronic device via the second communication module, based on motion information of the electronic device. Other embodiments are possible.