Abstract:
[Object] To provide an image processing apparatus capable of increasing a distance calculation accuracy.[Solving Means] According to an embodiment of the present technology, there is provided an image processing apparatus including a parallax information generation unit. The parallax information generation unit generates parallax information based on a first phase difference distribution and a second phase difference distribution, the first phase difference distribution being generated on a pixel by pixel basis for the first parallax image and the second parallax image, the second phase difference distribution being generated on a sub-pixel by sub-pixel basis based on the first phase difference distribution.
Abstract:
The present technology relates to a data processing apparatus, a data processing method, and a program that are capable of generating calibration data for performing appropriate image processing. The data processing apparatus performs interpolation to generate calibration data for a predetermined focus position by using calibration data for a plurality of focus positions. The calibration data for the plurality of focus positions is generated from a calibration image captured at the plurality of focus positions. The calibration image is obtained by capturing an image of a known object in the plurality of focus positions with a multi-lens camera that captures an image from two or more viewpoints. The present technology is applicable, for example, to a multi-lens camera that captures an image from two or more viewpoints.
Abstract:
A depth map generation unit generates a depth map from images obtained by picking up a subject at a plurality of viewpoint positions by an image pickup unit. On the basis of the depth map generated by the depth map generation unit, an alignment unit aligns polarized images obtained by the image pickup unit picking up the subject at the plurality of viewpoint positions through polarizing filters in different polarization direction at the different viewpoint positions. A polarization characteristic acquisition unit acquires a polarization characteristic of the subject from a desired viewpoint position by using the polarized images aligned by the alignment unit to obtain the high-precision polarization characteristic with little degradation in temporal resolution and spatial resolution. It becomes possible to acquire the polarization characteristic of the subject at the desired viewpoint position.
Abstract:
The present technology relates to an image processing device, an image processing method, and a program that enable refocusing accompanied by desired blurring. A light collection processing unit performs a light collection process to generate a processing result image focused at a predetermined distance, by shifting the pixels of images of a plurality of viewpoints in accordance with a shift amount and integrating the pixel values. In the light collection process, the pixels are shifted in accordance with a corrected shift amount obtained by correcting the shift amount with correction coefficients for the respective viewpoints. The present technology can be applied in a case where a refocused image is obtained from images of a plurality of viewpoints, for example.
Abstract:
There is provided an image processing apparatus including a display configured to display a captured image and a representative icon, wherein the representative icon indicates a range of a focus area of the displayed image and the range encompasses a center of focus point located at an initial position within the displayed image, and a processor configured to adjust the range of the focus area of the displayed image according to a size of the representative icon.
Abstract:
There is provided an image processing apparatus including, a display configured to display a captured image and a representative icon, wherein the representative icon indicates a range of a focus area of the displayed image and the range encompasses a center of focus point located at an initial position within the displayed image, and a processor configured to adjust the range of the focus area of the displayed image according to a size of the representative icon.
Abstract:
There is provided an image processing apparatus and an image processing method that make it possible to accurately reproduce a blur degree of an optical lens. A ray reproduction section reproduces rays to be incident to a virtual lens, which has a synthetic aperture configured from a plurality of image pickup sections that pick up images at a plurality of visual points, from a real space point in a real space. A light condensing processing section performs a light condensing process in which positioning of a position at which the rays are condensed on a virtual sensor through an emulation lens of an emulation target is performed depending upon an image plane shift position that is a position on the virtual sensor, which is reached by a principal ray emitted from the real space point through the emulation lens, and the ray is condensed on the virtual sensor.
Abstract:
The present technology relates to an information processing apparatus and an image processing method that make it possible to accurately reproduce a blur degree of an optical lens. A ray generation section generates rays to be incident to a virtual lens having a synthetic aperture configured from a plurality of image pickup sections that pick up images of a plurality of visual points from a real space point in a real space. A luminance allocation section allocates a luminance to rays remaining as a result of a collision decision for deciding whether or not the rays collide with an object before the rays are incident to the virtual lens. The present technology can be applied to a light field technology for reconstructing, for example, images picked up using various optical lenses from images of a plurality of visual points.
Abstract:
There is provided an image processing apparatus including a display configured to display a captured image and a representative icon, wherein the representative icon indicates a range of a focus area of the displayed image and the range encompasses a center of focus point located at an initial position within the displayed image, and a processor configured to adjust the range of the focus area of the displayed image according to a size of the representative icon.
Abstract:
There is provided an image processing device including a depth generation unit configured to generate, based on an image of a current frame and an image of a preceding frame of the current frame, a depth image indicating a position of a subject in a depth direction in the image of the preceding frame as a depth image of the current frame.