Abstract:
A liquid crystal display includes: a light source section including emission subsections; a liquid crystal display panel performing image display through modulating light coming from each of the emission subsections; and a display control section having a partitioning-drive processing section which generates an emission-pattern signal and a partitioning-drive image signal and performs light-emission drive on each of the emission subsections, and performing display-drive on the liquid crystal display panel. The partitioning-drive processing section calculates a first maximum pixel value and a first average pixel value the first maximum pixel value representing a maximum pixel value in each of pixel regions which correspond to the respective emission subsections, and the first average pixel value representing an average pixel value in each of the pixel regions, and generates the emission-pattern signal and the partitioning-drive image signal based on both the first maximum pixel value and the first average pixel value.
Abstract:
This technology relates to an image processing device, an image processing method, and a program capable of realizing motion parallax closely related to that of the real world. An image processing unit corrects a depth image formed of a depth value indicating a position in a depth direction of each pixel of a color image of a predetermined viewpoint externally input as an input image based on positional information indicating a position of a viewer and the like. This technology is applicable to an image processing device, which performs a process to correct the depth image based on the positional information as an image process, for example.
Abstract:
Disclosed herein is an image processing apparatus including, a motion-vector detection section configured to find a motion vector corresponding to an image disparity existing between left and right eyes to appear as a disparity in images, and a format determination section configured to determine whether the input image signal is a signal of the 3-dimensional image format or a signal of the 2-dimensional image format.
Abstract:
An image processing apparatus includes a unit configured to calculate a sum of absolute differences between pixel values of pixels in a block of interest and pixel values of pixels in a reference block, a unit configured to compare sums of absolute differences calculated and to determine a minimum sum of absolute differences thereamong, a unit configured to estimate a motion vector for the pixel of interest using the reference pixel having the minimum sum of absolute differences and the pixel of interest, a unit configured to generate a motion-compensated image by using pixel values of the pixels as pixel values of corresponding pixels in the motion-compensated image, a unit configured to cumulatively add sums of absolute differences, and a unit configured to generate an interpolation image by mixing the pixels and corresponding pixels in the motion-compensated image according to an obtained cumulative-sum result.
Abstract:
Disclosed herein is an image processing apparatus including, a motion-vector detection section configured to find a motion vector corresponding to an image disparity existing between left and right eyes to appear as a disparity in images, and a format determination section configured to determine whether the input image signal is a signal of the 3-dimensional image format or a signal of the 2-dimensional image format.
Abstract:
An image processing apparatus includes a difference calculation unit that obtains a luminance difference between images of two successive frames; an average calculation unit that calculates the average of luminance differences obtained for a predetermined number of successive frames; a change determination unit that determines, for each frame of the predetermined number of the successive frames, whether images of two successive frames including the frame are the same by comparing the luminance difference obtained for the frame with the average; and a display pattern determination unit that determines a temporal display pattern of images of the predetermined number of the successive frames from among a plurality of display patterns including a display pattern in which groups each having a certain number of successive frames in which the same image is displayed are regularly repeated, using a determination result obtained by the change determination unit.
Abstract:
A generating unit allocates an image of a predetermined viewpoint to two or more viewpoints in a 3D image display unit that displays images of the two or more viewpoints in a direction differing according to a viewpoint based on an input from a user. A driving processing unit causes the image of the predetermined viewpoint to be displayed on the 3D image display unit based on the allocation. For example, the present technology can be applied to an image processing apparatus for a 3D image.
Abstract:
An image processing apparatus includes: a difference-value calculation mechanism calculating a difference value between the first accumulated value produced by accumulating luminance values of a plurality of pixels in a first image and the second accumulated value produced by accumulating luminance values of a plurality of pixels in a second image having a difference in time with the first image; a threshold-value creation mechanism for creating a plurality of threshold values on the difference value in accordance with the first accumulated value, corresponding to the luminance change levels in order to grade a luminance change between the first image and the second image by a luminance change level indicating a degree of the luminance change; and a luminance-change-level determination mechanism for determining the luminance change level corresponding to the difference value on the basis of the plurality of threshold values.
Abstract:
An image processing apparatus includes a motion vector detection unit configured to detect a motion vector at a predetermined space position of a frame at a predetermined time from an input image of a plurality of temporally different frames and obtain a reliability of the motion vector; a motion vector evaluation unit configured to obtain, at each space position, an evaluation value of the motion vector at the space position that is within a predetermined range including a subject space position that is a space position of interest, on the basis of the reliability at the space position and a distance from the subject space position; and a motion vector correction unit configured to correct the motion vector at the subject space position on the basis of the evaluation value and the motion vector at the space position of the predetermined range.
Abstract:
There is provided a signal processing device including a measured value acquisition unit configured to acquire a measured value for a feature quantity, the feature quantity having an influence on an estimation of a motion that appears in each frame of an input video signal, a determination unit configured to, on the basis of the measured value acquired by the measured value acquisition unit, determine a characteristic of a filter to be applied to the input video signal, and a filtering unit configured to generate a video signal for use in the estimation of a motion by applying to the input video signal a filter with the characteristic determined by the determination unit.