Abstract:
The present invention relates to a display apparatus and a display method that enable multiple users to view high resolution moving images from various viewing points of the users. A light-control screen 25 is rotated, and projectors 211 to 21N irradiate the screen 25 from various directions with light rays corresponding to image data captured from those directions. In this case, when the forward direction of the light-control screen 25 is aligned with the projecting direction of one of the projectors 21n, an image corresponding to light rays emitted from the projector 21n is displayed on the light-control screen 25. The present invention may be applied to a display apparatus for displaying images.
Title translation:IS信息信号处理装置和处理方法中,系数生成装置及-ERZEUGUNGSVERFAHREN,NACHSCHLAGETABELLENERSTELLUNGSVORRICHTUNG AND -ERSTELLUNGSVERFAHREN,PROGRAM具体实施方法,以及所述程序包括:介质
Abstract:
An image is easily changed according to the user viewpoint. Original image data on an object imaged from an arbitrary point on a curved surface ohm as a viewpoint is stored. Attention is paid on a straight line Li connecting the viewpoint P and a point Ri on the object, and the intersection point of the straight line Li and the curved surface ohm is expressed as Qi. When the object is viewed from the viewpoint P, the pixel value corresponding to the light ray going from the point Ri on the object to the view point P coincides with the pixel value corresponding to the light ray going from the point Ri on the object to the point Qi on the curved surface ohm, and the pixel value corresponding to the light ray going from this point Ri to the point Qi exists on the original image data. That is, the pixel value when the point Ri on the object is viewed from the viewpoint P can be obtained from the original image data on the object imaged from the point Qi on the curved surface ohm as the viewpoint. The present invention can be applied, for example, to an image processing device for obtaining an image corresponding to a user viewpoint.
Abstract:
PROBLEM TO BE SOLVED: To reduce a computation complexity and search time. SOLUTION: A representative value information generating part 32 generates representative value information of information encoded for each block, based on a representative value of each block. A distribution amount sample value computing part 33 computes a distribution amount expressing a distribution of sample values in the block. Representative value information acquiring parts 42-1, 42-2 acquire representative value information of search and comparison objects. A distance computing part of a search part 24 computes a distance between the representative value information of the comparison object with and the representative value information of the search object. A selection part of the search part 24 selects the comparison object similar to the search object, based on the computed distance. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To allow a user to secure a higher immersion feeling (realistic feeling). SOLUTION: A remote commander 116 comprises a bird's-eye image display part 117 and a touch panel 118. The bird's-eye image display part 116 displays a bird's-eye image by image data D4 of the bird's-eye image. The touch panel 118 notifies a control part 113 about various kinds of operation of the user by the bird's-eye image display part 117. The control part 113 acquires image data of a wide-angle image related to a spot indicated by the user operation in the bird's-eye image from a media database 112, and displays an image of a partial area cut out from the wide-angle image on the basis of the image data on a background image display part 115 as a background image. The partial area cut out from the wide-angle image is varied by a direction indicated by the user operation in the bird's-eye image. The user can actively move inside scenery on the basis of the bird's-eye image. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To easily perform the development of a function relating to a GUI and the change of the addition or deletion of a function. SOLUTION: A GUI display picture is internally hierarchically configured of a plurality of layers 42-1 to 42-3, and they are displayed on a display so as to be superimposed. At least one CUI component configuring the GUI display picture is plotted on the layers 42-1 to 42-3 of display picture size. A GUI event corresponding to the operation of a user to the GUI display picture is supplied to all the layers 42-1 to 42-3, and each GUI image is plotted according to the content of the received event and its own status in each layer 42-1 to 42-3. This invention may be applied to an information processor for plotting the predetermined GUI display picture, and for making the display display it. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To generate a higher-definition image signal in real time. SOLUTION: A student image generator 11 generates a CIF image signal as a student image signal by thinning pixels by 1/2 in horizontal and vertical directions from an inputted SD image signal. A learning pair generator 12 generates a learning pair consisting of a signal pair of the SD image signal and the CIF image signal. A coefficient generator 13 generates a normal equation on the basis of the learning pair, and generates a prediction coefficient. An image operator 14 applies the prediction coefficient to the SD image signal to generate an HD image signal. This invention is applicable to an image processor for generating an HD image signal from an SD image signal. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To appropriately classify pixels in accordance with contents of a plurality of consecutive images. SOLUTION: A DR history calculation circuit 81 calculates a history DR hist representing a temporal transition of a dynamic range DR of an SD pixel at a position corresponding to a pixel of interest based on an ADRC code resulting from applying ADRC processing to an inputted image, the dynamic range DR and data representing the dynamic range DR in data representing a minimum value MIN. Furthermore, a waveform history calculation circuit 82 calculates a history W hist representing a temporal transition of an ADRC code (waveform) of the SD pixel at the position corresponding to the pixel of interest based on the ADRC code in said data. A class code calculation circuit 83 performs classification based on the history DR hist and the history W hist . The present invention may be applied to an image processing apparatus which displays an image on a display device. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To make it possible to display a stereoscopic image for a plurality of viewers without degrading the resolution. SOLUTION: Five projectors 63-1 to 63-5 located at positions forming a similar positional form to those at which five different cameras are placed project images photographed by the cameras to a screen 101. The lights projected onto the screen 101 are refracted by passing through a cylindrical lens array of the screen 101 to provide an image with parallax viewed from users 120 corresponding to the positions of the projectors 63-1 to 63-5, that is, a stereoscopic image. This invention is applicable to television receivers. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To perform voice recognition easily. SOLUTION: A feature quantity extraction part 31 extracts the feature of a waveform shape of input voice and the relevance of the feature as a feature quantity. A phoneme discrimination part 34 discriminate a phoneme from the feature quantity. A phoneme discrimination database 32 stores a feature quantity for each phoneme for each unspecified speaker and each speaker. The phoneme discrimination part 34 discriminates a phoneme by comparing the feature quantity extracted by the feature quantity extraction part 31 with the feature quantity of each phoneme for each unspecified speaker stored in the phoneme discrimination database 32 until a speaker is discriminated by a speaker discrimination part 37. When a speaker is discriminated by the speaker discrimination part 37, the phoneme discrimination part 34 discriminates a phoneme by comparing the feature quantity extracted by the feature quantity extraction part 31 with the feature quantity of each phoneme for each discriminated speaker stored in the phoneme discrimination database 32. COPYRIGHT: (C)2010,JPO&INPIT