Abstract:
A printing management device (50) includes: a customer property DB (14) configured to accumulate history data for each customer; a printer property DB (16) configured to record printer property data for each of multiple printers; target image quality index decision means (24) configured to decide a target image quality index by the use of the history data of the customer property DB; and printout condition decision means (54, 56, 60, 64) configured to decide/output output conditions with reference to the printer property DB according to order information (12) and the target image quality index.
Abstract:
This camera system comprises: a database which stores a plurality of three-dimensional profiles, wherein conversion relations, which are computed from image data which is obtained by photographing a plurality of reference color three-dimensional objects whereto reference colorimetric values are pre-appended and corresponding reference colorimetric values, are associated with a plurality of photographic illumination conditions; a selection unit which, on the basis of an illumination condition when photographing a three-dimensional photographic subject, selects the three-dimensional color profile corresponding to said illumination condition; and a color conversion unit which, on the basis of the selected three-dimensional color profile, carries out a color conversion from the image data of the photographed image of the photographed three-dimensional photographic subject to a colorimetric value.
Abstract:
A base makeup cosmetic satisfying the relationship expressed by the following Formula (1) and the relationship expressed by the following Formula (2) and exhibiting a hue angle of the cosmetic in a range of from 40° to 80°, wherein, when incident light falls on a light-receiving surface from a direction at -45° relative to the light-receiving surface, the light-receiving surface being a surface of a coating layer obtained by applying the base makeup cosmetic, (C*45) and (angle h*45) respectively represent the chroma (C*45) and hue angle (angle h*45) of reflected light in a specular reflection direction (a direction at 45°); and, when incident light falls on the light-receiving surface from a direction at -45° relative to the light-receiving surface, (C*0) and (angle h*0) respectively represent the chroma (C*0) and hue angle (angle h*0) of reflected light in a diffuse reflection direction (a direction at 0°). C * 0 - C * 45 ‰¤ 2.0 angle h * 0 - angle h * 45 ‰¤ 1.5
Abstract:
PROBLEM TO BE SOLVED: To provide a method of producing a conductive sheet having stabilized conduction performance even after being cut, in which visibility of an observed object can be enhanced significantly by reducing the noise graininess due to a pattern, and to provide a conductive sheet and a program.SOLUTION: The output image data ImgOut representing a mesh pattern M has such characteristics as each integral value NP(Ux, Uy) in a spatial frequency band within 1/4 to 1/2 times of the Nyquist frequency Unyq corresponding to the output image data ImgOut, in convolution integral of the spectrum Spc of the output image data ImgOut and the standard visual response characteristics of a human being (VTF), is larger than an integral value NP(0, 0).
Abstract:
PROBLEM TO BE SOLVED: To provide a method of manufacturing a transparent conductive film capable of appropriately controlling directivity of the interference of the light caused by a plurality of openings formed by a mesh pattern, and to provide a conductive film, a transparent heater and a program.SOLUTION: A plurality of positions (seed points SD) are selected in a predetermined two-dimensional region 200, and image data Img representing a figure of a mesh pattern M having a plurality of openings 52 is formed based on the selected plurality of positions (the seed points SD). A first evaluation value EV1 which quantifies directivity of the interference of the light generated through the plurality of openings 52 relative to two axial directions crossing each other is computed based on the formed image data Img. Based on the computed first evaluation value EV1 and predetermined evaluation conditions, one piece of image data Img is determined as output image data ImgOut, and based on the determined output image data ImgOut, a wire material is output to be formed on a transparent film base material 56.
Abstract:
PROBLEM TO BE SOLVED: To provide an imaging apparatus, a program and a method, which increase the resolution of an image in each different polarization state. SOLUTION: The imaging apparatus includes: a polarizing filter part including a plurality of polarizing filter units each of which includes a plurality of polarizing filters each of which transmits light different in polarization state; an imaging part having a plurality of pixels which receive light having transmitted through each of the plurality of polarizing filters; and a calculation part for calculating a polarization pixel value of the same polarization state in a pixel receiving light of the other polarization state based on the polarization pixel value of the pixel receiving light of the same polarization state. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an image capturing device capable of providing an image of desired definition color components corresponding to the penetration depth of light to a subject. SOLUTION: The present invention relates to an image capturing system comprising an image capturing device. The image capturing device includes a plurality of first light receiving elements that receive light in a first wavelength region and a plurality of second light receiving elements that receive light in a wavelength region having a penetration depth in relation to a subject that is less than the penetration depth of light in the first wavelength region. The number of second light receiving elements is greater than the number of first light receiving elements. The ratio of the number of second light receiving elements to the number of first light receiving elements may be set according to a ratio of the penetration depth of light in the first wavelength region to the penetration depth of light in a second wavelength region, which is the light in the wavelength region received by the second light receiving elements. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a print management device capable of providing a printed matter having optimum balance in quality, cost and delivery time according to a request by a customer even when image quality requested by the customer is not explicit.SOLUTION: A print management device (50) includes: a customer characteristic database (14) which accumulates history data in which usage, an image quality index and evaluation by a customer of printed matters provided in past transactions for each customer are associated with each other; a printer characteristic database (16) which records printer characteristic data in which a printing condition and a picture index to be realized are associated with each other for each printer of a plurality of printers; target image quality index determination means (24) which determines a target image quality index by using the history data of the customer characteristic database (14); and print output condition determination means (54,56,60 and 64) which determine an output condition from order information (12) and the target image quality index by referring to the printer characteristic database (16), to output the information.
Abstract:
PROBLEM TO BE SOLVED: To provide a conductive sheet capable of reducing a sense of granular noise caused by a pattern, and significantly improving visibility of an object to be observed, a touch panel, and a display device.SOLUTION: A mesh pattern 20 is formed such that, relative to the center of gravity spectrum Spcc of each mesh shape 22, an average strength Pin a spatial frequency domain side, the spatial frequency of which is higher than a predetermined spatial frequency Fb, becomes larger than an average strength Pin a spatial frequency domain side, the spatial frequency of which is lower than the predetermined spatial frequency Fb.
Abstract translation:要解决的问题:提供能够降低由图案引起的颗粒噪声感的导电片,并且显着提高被观察物体,触摸面板和显示装置的可视性。 解决方案:形成网格图案20,使得相对于每个网格形状22的重心光谱Spcc,在空间频域中的平均强度P H SB 空间频率高于预定空间频率Fb的空间频率的空间频率的平均强度比空间频域侧的平均强度P L SB>大,其空间频率较低 比预定的空间频率Fb。 版权所有(C)2013,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a method for manufacturing conductive sheets capable of reducing a sense of granular noise caused by a pattern, and significantly improving visibility of an object to be observed, a conductive sheet manufactured using the same method, a touch panel, a display device, and a program.SOLUTION: Image data Img representing a pattern of a mesh pattern 20 is created based on a plurality of positions (seed points SD) selected from a plane domain 100. An evaluation value EVP formed so as to quantify noise characteristics of the mesh pattern is computed based on the image data Img. From output image data ImgOut determined based on the evaluation value EVP and prescribed evaluation conditions, first image data representing a pattern in one main surface side of a transparent substrate 12 is cut out and second image data representing a pattern in the other main surface side of the transparent substrate 12 is cut out.