Abstract:
A photographing device may include two or more lenses having different view angles, and a processor configured to detect a first subject using images acquired from the lenses and to generate a notification signal based on whether or not a second subject approaches the view angle of a first image including the first subject among the acquired images.
Abstract:
A photographing apparatus is provided. The apparatus includes a first buffer configured to store a plurality of images generated by a first camera module among a plurality of camera modules, a second buffer configured to store a plurality of images generated by a second camera module among the plurality of camera modules, a display configured to display an image generated by the first camera module as a live image, and a controller configured to analyze the images stored in the first buffer and the second buffer using at least one of image information of each image stored in the first buffer and the second buffer and photographing information of the plurality of camera modules, and in response to an event occurring in at least one of the plurality of images stored in the second buffer, to control the display to provide a state notification service on the second camera module. When a foreign substance appears on at least one of the plurality of camera modules, the photographing apparatus may notify a user of the state more intuitionally.
Abstract:
An image photographing apparatus and method are provided. The image photographing method includes inputting images having different view points for a subject; displaying a first image among the images; in response to an input of a user command, changing the first image to a second image having a view point which is different from that of the first image, and displaying the second image; and in response to an input of a photographing command, acquiring the second image.
Abstract:
Disclosed are devices and methods for generating an image. A device according to an aspect of an example embodiment includes: a first camera configured to acquire a first black-and-white image; a second camera configured to acquire a first color image; a first electronic circuit configured to generate a second black-and-white image using the first color image; a second electronic circuit configured to determine information representing positional relationships between pixels in the first black-and-white image and pixels in the second black-and-white image; and a third electronic circuit configured to generate a third black-and-white image based on the first black-and-white image, the second black-and-white image, and the determined information.
Abstract:
Provided are an image zooming method and an image zooming apparatus for optical zooming by using a plurality of lenses with different focal lengths. The image zooming method includes capturing an identical scene via a plurality of lenses; obtaining a first image and a second image of the identical scene that have different resolving powers; determining a first area of the first image and a second area of the second image which corresponds to the first area; and generating a composite image the second area and a remaining area of the first image from which the first area is excluded.
Abstract:
An image photographing apparatus and a photographing method thereof are provided. The image photographing method includes displaying a photographing mode selection user interface (UI), in response to a plurality of photographing modes being selected through the photographing mode selection UI, calculating a final setting value based on a photographing setting value of the plurality of selected photographing modes, and in response to a photographing command being input, photographing an image according to the calculated final setting value.
Abstract:
Image capturing methods and image capturing apparatuses are provided. The image capturing method may include setting a target position of a live view image, tacking a moving object from the live view image, estimating a position of the moving object by using information on the tracked moving object, and capturing a still image based on the estimated position when the moving object is positioned on the target position of the live view image.
Abstract:
A catadioptric light-field lens has a replaceable micro-mirror array including a plurality of micro-mirrors arranged in concentric rings; a light incidence region formed around the micro-mirror array; a main mirror which is configured to reflect light incident via the light incidence region and concentrate the light at the micro-mirror array; and a light exit region which is formed through the center portion of the main mirror to face the micro-mirror array.
Abstract:
An image photographing apparatus and an image photographing method are provided. The image photographing apparatus includes: a plurality of image capturers respectively comprising lenses having different focal distances and respectively configured to capture a plurality of images having different resolutions; a storage configured to store the plurality of images captured by the plurality of image capturers; an image processor configured to adjust properties of the plurality of images to correspond to each other; a controller configured to, in response to a magnification change command being input, control the image processor to synthesize the plurality of images of which the properties are adjusted and generate a synthesis image of a magnification changed according to the magnification change command; and a display configured to display the synthesis image.
Abstract:
A folded optical zoom lens and an image pickup apparatus including the same are provided. The zoom lens includes a first reflection plate and a second reflection plate having reflection surfaces facing each other; a light incidence region disposed around the second reflection plate; a light exit region disposed in a hole in a center portion of the first reflection plate; and a mirror, which is disposed around the second reflection plate and reflects light incident via the light incidence region toward the first reflection plate. The mirror is configured to change a length of a an optical path of light incident via the light incidence region, reflected between the first reflection plate and the second reflection plate, and exiting the zoom lens via the light exit region.