Abstract:
PROBLEM TO BE SOLVED: To provide an image display device which classifies stored image data into groups of image data and extracts and displays representative image data of a selected group based on inputted conditions. SOLUTION: The image display device 1 comprises a digital image data inputting means 40 into which image data are inputted, an image data storing means 45 for storing the inputted image data, an image classifying means 50 for classifying the stored image data into groups of image data according to metadata and attribute information about persons contained in images, an extraction condition inputting means 78 into which conditions for extracting representative image data of a group out of the image data contained in the group are inputted, a group selecting means 79 for selecting a group, an image extracting means 80 for extracting image data satisfying the conditions by image-processing images at each group or by acquiring the attribute information of each image and collating the attribute information with the extraction conditions, and a displaying means 115 for displaying an image indicated by the extracted image data. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To determine a title name suitable to digital image data from the meta data of digital image data, the attribute information of the manager of the digital image data and the event information of a date when the digital image data are photographed. SOLUTION: This title preparation device 1 is provided with a digital image data input means 50 for inputting digital image data; a meta data acquiring means 54 for acquiring the meta data of the digital image data including information relating to the date and place that the digital image data are photographed; a manager attribute information acquiring means 74 for acquiring attribute information including the information relating to the date and place of a manager who manages the digital image data; an event information acquiring means for acquiring the event information corresponding to the date and place that the digital image data are photographed; and a title name determining means 60 for determining the title name of the digital image data by collating the information included in the meta data with at least one of the attribute information and the event information. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To correct the effect of fading by digitizing and printing data of part of an image together with the image and by restoring and referring to the digitized data regarding the image faded after the printing. SOLUTION: An image processing system 1 includes an image output apparatus 2 and an image correction apparatus 3. The image output apparatus 2 includes: an extract means 74 for extracting an image (B) in a part of a region of a received multicolor image (A); a coding means 76 for coding data of the extracted image (B); and a print means 78 for printing the acquired image (A) and the coded data on a medium. The image correction apparatus 3 includes: a restoration means 84 for decoding the data read from the printed medium to restore the image (B); a searching means 82 for searching the region of the image (B) from the image (A) read from the medium; a fading detection means 86 for detecting the degree of the fading of the region; and a correction means 88 for correcting the fading caused in the image (A). COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a projector where deterioration in a picture caused by the compensation of the distortion in an image is reduced, and also, the generation of the distortion in the image can be suppressed with versatile applicability. SOLUTION: The projector comprises: a projection angle leading-out part 153 where angle information showing an angle formed by a projection object region and projection light to the projection object region is produced; a projection distance leading-out part 158 where projection distance information showing a projection distance from the objective region in the projection object region to a projection part 190 of the projection light is produced; a control information production part 154 where direction control information for making the projection direction of the projection light to the normal direction of the projection object region is produced based on the projection angle information, and projection part control information for controlling the projection part 190 so that the projection light is projected on the object region is produced based on the projection distance information; a setting driving part 155 of driving a setting for regulating the projection direction of the projection light based on the direction control information; a control part 156 of controlling the projection part 190 based on the projection part control information; and a projection part 190. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image processing system, etc. which corrects distorted images so that a desired aspect ratio is reached. SOLUTION: The projector is composed of an image projector 190 for projecting an image on a rectangular screen through a liquid crystal panel, a position adjusting information generator 140 for generating position adjusting information based on the position adjustment of the image by a user, a correcting information generator 120 for generating position correcting information for correcting the positions of the four corners of the image on the screen based on the position adjusting information, and a corrector 130 for correcting image information for projecting the image based on the position correcting information. COPYRIGHT: (C)2006,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image display system, a program, an information storage medium, and an image processing method which can perform calibration without interrupting a display of a presentation image, etc. SOLUTION: An image processing part of a projector is provided with an area decision part 450 which decides a displayed area and an area outside a display according to environment information measured by a CCD sensor 417, a lightness variation derivation part 460 which derives lightness variation of the area outside the display, a gradation correction parameter derivation part 470 which derives a gradation correction parameter according to the lightness variation, and a 1D-LUT generation part 490 which generates 1D-LUT used to correct the lightness according to the gradation correction parameter.
Abstract:
PROBLEM TO BE SOLVED: To provide an environmentally adaptive type image display system which is capable of conducting corrections for an image in a shorter time, a method for processing image and an information storage medium. SOLUTION: A Y value of color signals (Y3, x3 and y3), which are measured by a color light sensor 60 and converted by a Y3x3y3 converting section 143, is replaced by Y1, which is the Y value in an ideal environment, in a Y replacing section 142. Then, a color difference between a replaced color signals (Y1, x3 and y3) and ideal color signals (Y1, x1 and y1) is obtained by a color difference computing section 145. When the color difference is not in an allowable correction range, the color difference is corrected by an environment subjectivity coefficient correction section 148 and image display information is corrected by using a corrected color difference (Δx' and Δy').
Abstract:
PROBLEM TO BE SOLVED: To eliminate a problem such as a false contour or color slurring in the case of forming a moving picture by supplying 1st color light to one of a liquid crystal panel in all the period when a color image is formed and supplying 2nd color light and 3rd color light to the other liquid crystal panel in time division. SOLUTION: This color image forming device 40 is provided with a color light supply means 41 supplying blue light, green light and red light as the 1st, the 2nd and the 3rd color light and an image forming means 42 forming an image corresponding to the supplied color light based on image information. The image information of the blue light is constantly supplied to a liquid crystal panel 9, the image information of the green light and the image information of the red light are supplied to a liquid crystal panel 10 time-sequentially and, then, the liquid crystal panels 9 and 10 modulate the light based on the image information. These image information are supplied in synchronization with the supplies of the blue light, the green light and the red light. Therefore, a composit image is formed by once rotating color filters 1 and 2.
Abstract:
PROBLEM TO BE SOLVED: To reduce eye fatigue since an observation of an external field is hardly disturbed by a virtual image by displaying a specific image on a display element and detecting a Mariotte blind spot. SOLUTION: While an operator views a fixation point in an external field such as an object of operation, etc., an image 1 having five marks 2, 3, 4, 5, and 6 at its center part and its four peripheral places is displayed on a display element. At this time, when a virtual image of the image 1 is positioned completely outside the Mariotte blind spot, the operator can confirm the virtual image corresponding to all the marks 2 to 6. When the virtual image of the image 1 is guided to inside the Mariotte blind spot, the operator can not confirm the virtual image corresponding to all the marks. For the purpose, the display position of the image 1 is adjusted to a position where the virtual image corresponding to all the marks can not be confirmed and then the Mariotte blind spot can be detected.
Abstract:
PROBLEM TO BE SOLVED: To provide a contact lens with which the distinct sepn. of images between the image by a near sight part and the image by a far sight part is possible and distinct sight is obtainable. SOLUTION: This contact lens 1 has a lens curve (2) formed with a near sight part curved surface (N) for viewing a near side and a far sight part curved surface (F) for viewing a far side concentrically with an optical axis (10). In such a case, a curved surface consisting of the one near sight part curved surface or the one far sight part curved surface inclusive of the optical axis is formed as a first curved surface (5) and a curved surface consisting of the one far sight part curved surface or the one near sight part curved surface adjacent to the outer side of this first curved surface is formed as a second curved surface (6). A central curved surface region delineated on this lens curve with the intersected point of the lens curve and the optical axis as its center and the prescribed radius as its radius is formed with a light attenuating means (8) which decreases the quantity of the transmitted light transmitted through this central curved surface region.