Abstract:
An imaging device comprising an image generation unit, a difference-emphasis processing unit, a display unit, a display controller that displays the first display image on the display unit and displays the second display image having been subjected to the difference-emphasis processing by the difference-emphasis processing unit in a displayed area of the first display image, and a calculation unit that calculates a parallax between the first pixel in the first image and the second pixel in the second image corresponding to the first pixel, wherein the difference-emphasis processing unit determines whether the parallax between the first image and the second image is large or small on the basis of the parallax calculated by the calculation unit, and performs the difference-emphasis processing on the basis of a result of determination whether the parallax is large or small.
Abstract:
An imaging device comprising a photographing lens, an imaging element; a first interpolation device, a second interpolation device, a focusing confirmation image generation device configured to at least generate a first image and a second image respectively from the pixel values of the first and second interpolation pixels calculated by the first and second interpolation device and generating a focusing confirmation image based on the first and second images, and a display device configured to display the focusing confirmation image generated by the focusing confirmation image generation device.
Abstract:
An image processing method according to the present invention acquires a first image and second image that are picked up through a single image-taking optical system, that are images after a pupil division, and that have a parallax to each other, and then performs a filtering process for each pixel of the first and second images, using first and second transform filters that correspond to the parallax for the pixel and that are of first and second transform filter groups to be respectively applied to the first and second images for the transform into third and fourth images in which the parallax amount and blur amount of the first and second images have been altered.
Abstract:
There is provided an image processing device, includes: a first display image generation section that generates a first display image; a second display image generation section that generates a second display image for use in focus-checking; an acquisition section that acquires color data of the first display image; a determination section that, based on the color data, determines as a display color for the second display image a color with different color characteristics from color characteristics of the first display image; and a display controller that displays on a display section the first display image generated by the first display image generation section, and displays on the display section the second display image generated by the second display image generation section within a display region of the first display image.
Abstract:
An image processing device includes: a coefficient decision section that, for each of target pixels in a first image and a second image, decides on a parallax conversion coefficient to convert a parallax computed by a parallax computation section into a parallax visually confirmable that the first image and the second image are within the first parallax range in cases determined by a first determination section to be within the first parallax range, and that decides on a parallax conversion coefficient to convert the parallax into a parallax visually confirmable that the first image and the second image are outside the first parallax range in cases determined by the first determination section to be outside the first parallax range; and an image processing section that performs image processing on the target pixels based on the parallax conversion coefficient decided by the coefficient decision section.
Abstract:
The present invention includes an image acquisition device configured to acquiring multiple viewpoint images that are generated by pupil-division imaging and that are different in viewpoint, a parallax calculation device 40a for calculating a first parallax amount between viewpoint images for the multiple viewpoint images, a memory 48 in which parallax correction information indicating the relationship between the first parallax amount and the deviation amount in the parallax direction for the corresponding object images, which is a deviation amount between viewpoint images for the multiple viewpoint images and is caused by the pupil-division imaging, is stored, and a parallax correction device 40b for calculating a second parallax amount, which is an amount resulting from correcting the first parallax amount to the deviation amount in the parallax direction for the object images, based on the first parallax amount and the parallax correction information stored in the memory 48.
Abstract:
An image processing device includes: a size acquisition section that acquires a first display size of an output target display device that performs 3D display; a storage section that stores respective parallax amounts adjusted by a user during performing 3D display of 3D display image data respectively on display devices of different types, and stores respective second display sizes of the display devices; a parallax amount computation section that computes a parallax amount for the first display size based on a relationship between the parallax amounts and the second display sizes stored in the storage section; and an output section that outputs to the output target display device the computed parallax amount and the 3D display image data.
Abstract:
An image capture element includes phase difference pixel groups (first and second pixel groups) corresponding to first and second images with a phase difference according to a focus shift, includes a third pixel group corresponding to a normal third image, outputs a first image and a second image with Bayer arrays from the first and second pixel groups, and outputs a third image with the same color array as a RAW image from the third pixel group. A color split image is generated based on the first and second images acquired from the image capture element, a color image for display is generated based on the third image, and the color split image is synthesized with part of the generated color image for display to thereby display a live-view image in which the split image is synthesized.
Abstract:
An imaging device comprising an imaging optical system, a lens movement mechanism, an imaging element, a first interpolation device, a second interpolation devices, a photographic image generation device, a split image generation device using a first image formed by the outputs of the first phase difference pixels and the first interpolation pixels and a second image formed by the outputs of the second phase difference pixels and the second interpolation pixels to generate a split image, and a display device displaying the photographic image generated by the photographic image generation device, the display device displaying the split image generated by the split image generation device in a display area of the photographic image.
Abstract:
The invention provides an image processing device, an imaging device, an image processing method, and a non-transitory computer readable recording medium recorded with an image processing program which can ensure a split image with a simple structure. A control unit selects the pixels in a 3n-th (n is an integer equal to or greater than 0) row as a first pixel group which functions as left phase difference pixels and reads a signal charge generated in a photodiode (PDL). The control unit selects the pixels in a (3n+2)-th row as a second pixel group which functions as right phase difference pixels and reads a signal charge generated in a photodiode (PDR). The control unit selects the pixels in a (3n+1)-th row as a third pixel group which functions as normal pixels, adds the signal charges generated in the photodiodes (PDL and PDR) and reads the sum of the signal charges.