Abstract:
The present disclosure relates to a method and an apparatus for image processing. The method includes: setting a block including at least one pixel and a window including the at least one block, with a center pixel as a reference; converting an input image in a YCbCr format to a monochrome image; determining a magnitude of an edge component and an edge direction in the window; determining a weight of the block in consideration of the magnitude of the edge component and the edge direction; and determining a color signal value of the center pixel by reflecting the weight of the block in the monochrome-converted window.
Abstract:
An electronic device is provided. The electronic device includes at least one image sensor, and a processor for generating a plurality of images having different noise characteristics through the at least one image sensor, and combining the plurality of images.
Abstract:
A method and an apparatus are provided in which an image sensor, operatively coupled with an electronic device, is operated in a first state based on a determination that the image sensor is to be operated in a low power mode. When the image sensor is operating in the first state, a setup value corresponding to a photographing mode is preserved, and the image sensor is refrained from outputting a stream of data.
Abstract:
An electronic sensor and a method for controlling the electronic sensor are provided. The electronic sensor includes at least two pixels having different light-receiving efficiencies and at least two pixel groups having different exposure settings. At least one of the at least two pixels corresponds to at least one of the at least two pixel groups.
Abstract:
An electronic device is provided. The electronic device includes a display and a processor. The processor is configured to output a first synthesized image expressing a state of an object via the display, to output preview information of an object used for the first synthesized image, to select at least one object from the first synthesized image in response to an input, to detect an input to edit an original image corresponding to the selected at least one object, and to generate and output a second synthesized image based on an object of the edited original image.
Abstract:
An operation method of an electronic device is provided. The method includes detecting motion objects in each of two or more continuously captured images, determining whether the detected motion objects are synthesizable for use as wallpaper, and providing feedback according to whether the detected motion objects are synthesizable for use as wallpaper.
Abstract:
A method of an electronic device including an image sensor that acquires an optical signal corresponding to an object and a controller that controls the image sensor, is provided. The method includes identifying a mode for generating an image corresponding to the object by using the optical signal, determining a setting of at least one image attribute to be used for generating the image at least based on the mode, generating image data by using pixel data corresponding to the optical signal at least based on the setting, and displaying the image corresponding to the object through a display functionally connected to the electronic device at least based on the image data.
Abstract:
An electronic device is provided. The electronic device includes a camera, a display, a memory, and at least one processor. The at least one processor may be configured to generate, based on information on pixels included in an image including at least one subject obtained using the camera, depth information corresponding to the at least one subject, to determine, based on the depth information, a first area displaying a first graphic indicator for indicating a focusing area on which the camera is focused, in the image displayed on the display, in a case in which a focus of the camera is controlled, and to display the first graphic indicator on at least some of the at least one subject included in the first area.
Abstract:
According to an embodiment of the present disclosure, an electronic device may comprise an image sensor and one or more processors configured to obtain a first plurality of image frames for an external object as per a first frame rate, detect a variation associated with the external object, when the variation meets a designated condition, obtain a second plurality of image frames for the external object as per the first frame rate or a second frame rate, generate a first portion of a video using at least some of the first plurality of image frames, generate a second portion of the video using at least some of the second plurality of image frames, and generate a third portion of the video using at least some of a third plurality of image frames for the external object obtained as per the first frame rate or a third frame rate.
Abstract:
An example sensor for image capturing may include a pixel array including a plurality of pixels; a read-out circuit configured to receive an analog electrical signal output from each of the plurality of pixels, convert the analog electrical signal into a digital electrical signal, and output the digital electrical signal; and a memory temporarily storing the digital electrical signal output from the read-out circuit and outputting at least part of the temporarily stored digital electrical signal to an external circuit.