Abstract:
An augmented reality (AR) display apparatus includes an outputter that outputs first radiation including visual information in a predetermined spectrum, a polarizing plate that absorbs a first s-polarized radiation from the first radiation and transmits a first p-polarized radiation and an optical layer that reflects at least a portion of the first p-polarized radiation incident on a first side of the optical layer with a wavelength corresponding to the predetermined spectrum.
Abstract:
An image sensor and a method of manufacturing the image sensor are provided. The image sensor includes a block layer including an absorption layer and a transparent layer, a lens element located below the block layer, and a sensing element located to face the lens element.
Abstract:
A multi-lens based capturing apparatus and method are provided. The capturing apparatus includes a lens array including lenses and a sensor including sensing pixels, wherein at least a portion of sensing pixels in the sensor may generate sensing information based on light entering through different lenses in the lens array, and light incident on each sensing pixel, among the portion of the plurality of sensing pixels may correspond to different combinations of viewpoints.
Abstract:
A method of processing an image includes obtaining a position of a viewpoint corresponding to the image, selecting, based on the position, two reference rays closest to a ray included in the image from among a plurality of reference rays included in reference images photographed in advance from different reference viewpoints; determining whether a difference between color values of the selected reference rays is less than or equal to a threshold; and determining a color value of the ray based on the color values of the selected reference rays in response to the difference between the color values of the selected reference rays being determined to be less than or equal to the threshold.
Abstract:
A displaying device and a displaying method are provided. The displaying device may include a light source configured to emit a plurality of input rays, a spatial light modulator configured to adjust at least one from among a brightness and a color of each of the input rays, and a tilting mirror array configured to adjust a progress direction of each of the input rays of which at least one from among the brightness and the color is adjusted and to output the input rays based on the adjusted progress direction.
Abstract:
A method and apparatus for correcting an image error in a naked-eye three-dimensional (3D) display, the method including controlling a flat-panel display displaying a stripe image, calculating a raster parameter of the naked-eye 3D display based on a captured stripe image, and correcting a stereoscopic image displayed on the naked-eye 3D display based on the calculated raster parameter, wherein the naked-eye 3D display includes the flat-panel display and the raster is disclosed.
Abstract:
A method of generating directional rays and apparatuses performing the method are disclosed. A backlight may include a light source configured to generate a ray, a light guide plate configured to transfer the ray to a display panel, and a directional pixel configured to generate a plurality of directional rays by scattering the ray, in which each of the directional rays may be incident at a corresponding subpixel in the display panel.
Abstract:
A classifier training method includes detecting error data from training data; and training a classifier configured to detect an object based on the error data.
Abstract:
An eyeglass-less 3D display device, and a device and method that compensate for a displayed margin of error are provided. The display device acquires an image of an integral image display (IID) image captured by a single camera, and compensates for a margin of error which arises due to a discrepancy between the designed position of a micro lens array located on one surface of a 2D panel and the actual position thereof, so as to provide a high-quality 3D image.
Abstract:
A method for generating a three-dimensional (3D) image may detect a current eye position of a user and render a 3D image based on at least one of a previously detected eye position of the user and previously generated stereo images. A cycle at which the current eye position of user is detected and a cycle at which a 3D image is rendered may be asynchronous.